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1.
Proc Natl Acad Sci U S A ; 119(22): e2204402119, 2022 05 31.
Article in English | MEDLINE | ID: mdl-35613049

ABSTRACT

Transcriptional regulation of differentiation is critical for parasitic pathogens to adapt to environmental changes and regulate transmission. In response to encystation stimuli, Giardia lamblia shifts the distribution of the cell cycle toward G2 and induces the expression of cyst wall proteins (CWPs) within 2 to 4 h, indicating that key regulatory steps occur within the first 4 h of encystation. However, the role of transcription factors (TFs) in encystation has primarily been investigated at later time points. How TFs initiate encystation and link it to the cell cycle remains enigmatic. Here, we systematically screened six putative early up-regulated TFs for nuclear localization, established their dynamic expression profiles, and determined their functional role in regulating encystation. We found a critical repressor, Golden2, ARR-B, Psr-1­like protein 1 (GARP)­like protein 4 (GLP4), that increases rapidly after 30 min of encystation stimuli and down-regulates encystation-specific markers, including CWPs and enzymes in the cyst N-acetylgalactosamine pathway. Depletion of GLP4 increases cyst production. Importantly, we observe that G2+M cells exhibit higher levels of CWP1, resulting from the activation of myeloblastosis domain protein 2 (MYB2), a TF previously linked to encystation in Giardia. GLP4 up-regulation occurs in G1+S cells, suggesting a role in repressing MYB2 and encystation-specific genes in the G1+S phase of the cell cycle. Furthermore, we demonstrate that depletion of GLP4 up-regulates MYB2 and promotes encystation while overexpression of GLP4 down-regulates MYB2 and represses encystation. Together, these results suggest that Giardia employs a dose-dependent transcriptional response that involves the cell-cycle­regulated repressor GLP4 to orchestrate MYB2 and entry into the encystation pathway.


Subject(s)
Giardia lamblia , Parasite Encystment , Protozoan Proteins , Repressor Proteins , Trans-Activators , Cell Cycle/genetics , Cell Differentiation/genetics , Giardia lamblia/genetics , Giardia lamblia/metabolism , Parasite Encystment/genetics , Protozoan Proteins/genetics , Protozoan Proteins/metabolism , Repressor Proteins/genetics , Repressor Proteins/metabolism , Trans-Activators/genetics
2.
Infect Immun ; 88(10)2020 09 18.
Article in English | MEDLINE | ID: mdl-32719158

ABSTRACT

Extracellular vesicles (EVs) secreted by eukaryotic and prokaryotic cells to transport lipids, proteins, and nucleic acids to the external environment have important roles in cell-cell communication through cargo transfer. We identified and characterized EVs from Entamoeba histolytica, a protozoan parasite and a human pathogen. Conditioned medium from amebic parasites contained particles consistent with the expected size and morphology of EVs. Mass spectrometry was used to characterize the EV proteome and showed that it was enriched in common exosome marker proteins, including proteins associated with vesicle formation, cell signaling, and metabolism, as well as cytoskeletal proteins. Additionally, the EVs were found to selectively package small RNAs (sRNA), which were protected within the vesicles against RNase treatment. Sequencing analysis of the sRNA contained in EVs revealed that the majority were 27 nucleotides (nt) in size and represented a subset of the cellular antisense small RNA population that has previously been characterized in Entamoeba RNA interference (RNAi) pathway proteins, including Argonaute, were also present in amebic EVs. Interestingly, we found that the amebic EVs impacted intercellular communication between parasites and altered encystation efficiency. EVs isolated from encysting parasites promoted encystation in other parasites, whereas EVs from metabolically active trophozoites impeded encystation. Overall, the data reveal that Entamoeba secrete EVs that are similar in size and shape to previously characterized exosomes from other organisms and that these EVs contain a defined protein and small RNA cargo and have roles in intercellular communication among parasites and influence growth kinetics.


Subject(s)
Cell Communication , Entamoeba histolytica/growth & development , Extracellular Vesicles/metabolism , Biomarkers/metabolism , Entamoeba histolytica/cytology , Entamoeba histolytica/metabolism , Exosomes/metabolism , Life Cycle Stages , Parasite Encystment , Proteome , Protozoan Proteins/metabolism , RNA, Protozoan/genetics , RNA, Protozoan/metabolism , RNA, Small Untranslated/genetics , RNA, Small Untranslated/metabolism
3.
Parasitology ; 147(12): 1305-1312, 2020 10.
Article in English | MEDLINE | ID: mdl-32660674

ABSTRACT

Entamoeba histolytica infection causes amoebiasis, which is a global public health problem. The major route of infection is oral ingestion of E. histolytica cysts, cysts being the sole form responsible for host-to-host transmission. Cysts are produced by cell differentiation from proliferative trophozoites in a process termed 'encystation'. Therefore, encystation is an important process from a medical as well as a biological perspective. Previous electron microscopy studies have shown the ultrastructure of precysts and mature cysts; however, the dynamics of ultrastructural changes during encystation were ambiguous. Here, we analysed a series of Entamoeba invadens encysting cells by transmission electron microscopy. Entamoeba invadens is a model for encystation and the cells were prepared by short interval time course sampling from in vitro encystation-inducing cultures. We related sampled cells to stage conversion, which was monitored in the overall population by flow cytometry. The present approach revealed the dynamics of ultrastructure changes during E. invadens encystation. Importantly, the results indicate a functional linkage of processes that are crucial in encystation, such as glycogen accumulation and cyst wall formation. Hence, this study provides a reference for studying sequential molecular events during Entamoeba encystation.


Subject(s)
Entamoeba/ultrastructure , Life Cycle Stages , Parasite Encystment/physiology , Entamoeba/growth & development , Microscopy, Electron
4.
J Appl Microbiol ; 129(2): 453-464, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32012390

ABSTRACT

AIMS: The study established the inactivation kinetic parameters of an Acanthamoeba cyst isolate subjected to heating and chlorination. METHODS AND RESULTS: A strain of Acanthamoeba was isolated and purified from an area surrounding a pilot food plant. Mature cysts (14 days) were subjected to heat inactivation studies at 71, 76, 81, 86 and 91°C; and chlorination at 100, 200, 300, 400 and 500 ppm. The decimal reduction times (D-values) at 71, 76, 81, 86 and 91°C were 18·31, 9·26, 7·35, 4·52 and 1·81 min respectively. The calculated thermal resistance constant (z-value) was 21·32°C (R2  = 0·96-0·97). The D-value in 100, 200, 300, 400 and 500 ppm chlorine-treated water were 47·17, 25·06, 24·51, 23·70 and 18·55 min respectively. The chlorine resistance constant (z-value) was 1179 ppm chlorine (R2  = 0·65-0·74). CONCLUSIONS: Results demonstrated high resistance of the isolated Acanthamoeba cysts towards the common methods applied in ensuring food and food processing environment sanitation. SIGNIFICANCE AND IMPACT OF THE STUDY: The resistance parameters of the test organisms established in this study may be used in the establishment of Sanitation Standard Operating Procedures (SSOPs), which are often based on inactivation of bacteria. These SSOPs could render better protection to food and food processing environments.


Subject(s)
Acanthamoeba/growth & development , Chlorine/metabolism , Hot Temperature , Parasite Encystment/physiology , Water Purification/methods , Acanthamoeba/metabolism , Adaptation, Physiological , Chlorine/analysis , Food Safety , Soil Microbiology , Water/chemistry , Water Microbiology , Water Purification/standards
5.
Exp Parasitol ; 215: 107915, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32461112

ABSTRACT

Acanthamoeba castellanii is an opportunistic protozoan responsible for serious human infections including Acanthamoeba keratitis and granulomatous amoebic encephalitis. Despite advances in antimicrobial therapy and supportive care, infections due to Acanthamoeba are a major public concern. Current methods of treatment are not fully effective against both the trophozoite and cyst forms of A. castellanii and are often associated with severe adverse effects, host cell cytotoxicity and recurrence of infection. Therefore, there is an urgent need to develop new therapeutic approaches for the treatment and management of Acanthamoebic infections. Repurposing of clinically approved drugs is a viable avenue for exploration and is particularly useful for neglected and rare diseases where there is limited interest by pharmaceutical companies. Nanotechnology-based drug delivery systems offer promising approaches in the biomedical field, particularly in diagnosis and drug delivery. Herein, we conjugated an antihyperglycemic drug, metformin with silver nanoparticles and assessed its anti-acanthamoebic properties. Characterization by ultraviolet-visible spectrophotometry and atomic force microscopy showed successful formation of metformin-coated silver nanoparticles. Amoebicidal and amoebistatic assays revealed that metformin-coated silver nanoparticles reduced the viability and inhibited the growth of A. castellanii significantly more than metformin and silver nanoparticles alone at both 5 and 10 µM after 24 h incubation. Metformin-coated silver nanoparticles also blocked encystation and inhibited the excystation in Acanthamoeba after 72 h incubation. Overall, the conjugation of metformin with silver nanoparticles was found to enhance its antiamoebic effects against A. castellanii. Furthermore, the pretreatment of A. castellanii with metformin and metformin-coated silver nanoparticles for 2 h also reduced the amoebae-mediated host cell cytotoxicity after 24 h incubation from 73% to 10% at 10 µM, indicating that the drug-conjugated silver nanoparticles confer protection to human cells. These findings suggest that metformin-coated silver nanoparticles hold promise in the improved treatment and management of Acanthamoeba infections.


Subject(s)
Acanthamoeba castellanii/drug effects , Metformin/administration & dosage , Acanthamoeba Keratitis/drug therapy , Acanthamoeba Keratitis/parasitology , Anti-Infective Agents, Local/pharmacology , Central Nervous System Protozoal Infections/drug therapy , Central Nervous System Protozoal Infections/parasitology , Chlorhexidine/pharmacology , HeLa Cells , Humans , Infectious Encephalitis/drug therapy , Infectious Encephalitis/parasitology , Metal Nanoparticles/administration & dosage , Metal Nanoparticles/therapeutic use , Metformin/pharmacology , Metformin/therapeutic use , Microscopy, Atomic Force , Parasite Encystment/drug effects , Silver , Spectrophotometry, Ultraviolet , Trophozoites/drug effects
6.
Parasitol Res ; 119(7): 2299-2307, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32476060

ABSTRACT

In the intermediate hosts, tachyzoites of T. gondii predominate in the acute stage while bradyzoites persist inside tissue cysts with the potential for reactivation. The two stages exhibit different metabolic and antigenic characters. The present study aimed to investigate temporal expression of Toxoplasma SAG1 and BAG1 genes in the brain tissue and the coincident parasitological and histopathological findings in mice models of toxoplasmosis. The study included group A: mice infected with RH strain and sacrificed 7 days post-infection (p.i.); group B: mice infected with RH strain and treated with sulfamethoxazole-trimethoprim (30 mg/kg/day and 150 mg/kg/day respectively) 24 h p.i. until sacrificed at days 5, 10, or 20 post-treatment; group C: mice infected with ME-49 strain and sacrificed at days 7, 27, 47, or 67 p.i; and group D: mice infected with ME-49 strain and received dexamethasone daily starting at day 68 p.i. and scarified at days 6 or 10 post-treatment. All mice were inspected daily for abnormal physical signs. Peritoneal exudate and brain homogenate were examined for detection of Toxoplasma stages. Brain sections were examined histopathologically. SAG1 and BAG1 gene expression was evaluated using reverse transcription real-time polymerase chain reaction and the ΔΔCt method. Results revealed that marked BAG1 upregulation is consistent with detection of Toxoplasma cysts and degenerative changes while predominance of tachyzoites and inflammatory infiltrate is compatible with SAG1 upregulation. The study sheds light on the potential for using stage-specific gene expression pattern as markers for evaluation of toxoplasmosis disease progression in clinical settings.


Subject(s)
Gene Expression Regulation, Developmental , Life Cycle Stages/genetics , Toxoplasma/genetics , Toxoplasmosis, Animal/pathology , Toxoplasmosis, Animal/parasitology , Animals , Brain/parasitology , Brain/pathology , Female , Genes, Protozoan/genetics , Mice , Parasite Encystment/genetics , Toxoplasma/growth & development
7.
Parasitol Res ; 119(7): 2287-2298, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32468190

ABSTRACT

Toxoplasma gondii is an important zoonotic protozoan of the phylum Apicomplexa that can infect nearly all warm-blooded animals. The parasite can exist as the interconvertible tachyzoite or bradyzoite forms, leading to acute or latent infection, respectively. No drug has been reported to penetrate the cyst wall and reduce bradyzoite survival and proliferation till now. The transcriptional level of metacaspases 2 (TgMCA2) in T. gondii is significantly upregulated during the formation of bradyzoites in the Pru strain, indicating that it may play an important role in the formation of bradyzoites. To further explore the function of TgMCA2, we constructed a TgMCA2 gene-knockout variant of the Pru strain (Δmca2). Comparative analysis revealed that the proliferative capacity of Pru Δmca2 increased, while the invasion and egressing properties were not affected by the knockout. Further data shows that the tachyzoites of Δmca2 failed to induce differentiation and form bradyzoites in vitro, and the transcriptional levels of some of the bradyzoite-specific genes (such as BAG1, LDH2, and SAG4A) in Δmca2 were significantly lower compared with that in the Pru strain at the bradyzoite stage. In vivo, no cysts were detected in Δmca2-infected mice. Further determination of parasite burden in Δmca2- and Pru-infected mice brain tissue at the genetic level showed that the gene load was significantly lower than that in Pru. In summary, we confirmed that TgMCA2 contributes to the formation of bradyzoites, and could provide an important foundation for the development of attenuated vaccines for the prevention of T. gondii infection.


Subject(s)
Life Cycle Stages , Protozoan Proteins/metabolism , Toxoplasma/enzymology , Toxoplasma/growth & development , Animals , Brain/parasitology , Gene Expression Regulation, Developmental , Life Cycle Stages/genetics , Mice , Parasite Encystment/genetics , Parasite Load , Protozoan Proteins/genetics , Toxoplasma/genetics , Toxoplasmosis, Animal/parasitology
8.
Parasitol Res ; 119(7): 2257-2262, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32458115

ABSTRACT

Bulls chronically affected by bovine besnoitiosis can suffer from sterility. There is limited information about the distribution of Besnoitia cysts and their associated lesions within the male genital organs. This work describes the gross and histological abnormalities in the genital organs of 6 bulls chronically infected with Besnoitia besnoiti, including both clinically (n = 4) and subclinically (n = 2) affected cases. Parasitic cysts were observed in the genital organs of all the clinically affected bulls. The tissue cysts were most commonly found within the pampiniform plexus (4/4), where they were often seen within venous vascular walls and associated with vasculitis, followed by epididymis (3/4), tunica albuginea (2/4), and penis (1/4). In decreasing order of their frequency, observed abnormalities included seminiferous tubule degeneration, testicular fibrosis, testicular necrosis, lack of/or diminished numbers of spermatozoa, testicular atrophy, and Leydig cell hyperplasia. Only one of the subclinically infected bulls had few Besnoitia cysts within the pampinoform plexus, which was associated to small areas of necrosis and mineralization in the ipsilateral testicle. Results indicate that Besnoitia cysts and genital abnormalities are frequent in bulls chronically affected by bovine besnoitiosis, while they are mild and scarce in subclinically affected ones. Moreover, present data show that Besnotia-associated testicular lesions can occur without the presence of cysts within the testicular parenchyma. B. besnoiti cysts seem to have a tropism for the vascular structures of the spermatic chord, which may cause testicular abnormalities via vascular damage, reduced blood flow, and/or impaired thermoregulation and subsequently lead to the observed testicular lesions.


Subject(s)
Cattle Diseases/parasitology , Coccidiosis/veterinary , Genitalia, Male/pathology , Sarcocystidae/pathogenicity , Animals , Cattle , Cattle Diseases/pathology , Chronic Disease , Coccidiosis/parasitology , Coccidiosis/pathology , Genitalia, Male/parasitology , Male , Parasite Encystment
9.
Parasitol Res ; 119(8): 2679-2686, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32588173

ABSTRACT

Rodents and other micromammals constitute important reservoirs of infectious diseases; their role in the life cycle of apicomplexan parasites such as Toxoplasma gondii, Neospora caninum, and Sarcocystis spp. still needs clarification. In the present study, we analyzed by PCR and Sanger sequencing methods the presence of specific parasite DNA within brain and heart tissues of 313 individuals of five synanthropic small mammal species (Apodemus sylvaticus, Mus spretus, M. musculus, Rattus rattus, and Crocidura russula) collected in Barcelona metropolitan area (NE Spain). In addition, PCR-RFLP and microsatellites were also used as tools for genotypic characterization of T. gondii and N. caninum, respectively. Specific DNA of T. gondii, N. caninum, and Sarcocystis spp. was detected in 0.3% (n = 1), 1.3% (n = 4), and 3.8% (n = 12) of the animals, respectively. No mixed infections were observed. Crocidura russula stood out as the main host for Sarcocystis spp. Toxoplasma gondii-specific DNA detected in a house rat was genetically characterized by PCR-RFLP, presenting type II and III alleles (SAG1 [II], SAG3 [II], GRA6 [II], c22-8 [III], Apico [III]). Also, unsuccessful DNA sequencing and microsatellite typing were attempted in N. caninum-positive samples, which suggested a lack of PCR specificity and open avenues to speculate the host competence of rodents for N. caninum. Likewise, Sarcocystis spp. identity was studied by alignment and phylogenetic analyses of cox1 and 28S rRNA sequences from the 14 positive samples. It resulted in at least three unknown organisms closely similar (95.7-100% cox1-sequence homology) to Sarcocystis pantherophisi from the Eastern rat snake (Pantherophis alleghaniensis) (KU891603), suggesting together with 28S rRNA sequences analyses, three Sarcocystis sp. with a life cycle conformed by rodents as intermediate host (IH) and snakes as definitive hosts (DH) infecting the periurban micromammals surveyed. Prevalence figures found in this first survey carried out in Spain agree with other international studies focused on periurban areas. Further surveys should be conducted in farms and their surroundings in order to unravel the role of wild micromammals in the epidemiology of such protozoan parasites affecting our livestock, and therefore human population.


Subject(s)
Coccidiosis/veterinary , Mammals/parasitology , Protozoan Infections, Animal/parasitology , Sarcocystidae/genetics , Animals , Coccidiosis/epidemiology , Coccidiosis/parasitology , DNA, Protozoan/genetics , DNA, Protozoan/isolation & purification , Genotype , Mammals/classification , Parasite Encystment , Phylogeny , Protozoan Infections, Animal/epidemiology , Sarcocystidae/classification , Sarcocystidae/isolation & purification , Spain/epidemiology
10.
Parasitol Res ; 119(7): 2327-2335, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32476058

ABSTRACT

Acanthamoeba castellanii is a free-living amoeba which can cause a blinding keratitis and fatal granulomatous amoebic encephalitis. The treatment of Acanthamoeba infections is challenging due to formation of cyst. Quinazolinones are medicinally important scaffold against parasitic diseases. A library of nineteen new 3-aryl-6,7-dimethoxyquinazolin-4(3H)-one derivatives was synthesized to evaluate their antiamoebic activity against Acanthamoeba castellanii. One-pot synthesis of 3-aryl-6,7-dimethoxyquinazolin-4(3H)-ones (1-19) was achieved by reaction of 2-amino-4,5-dimethoxybenzoic acid, trimethoxymethane, and different substituted anilines. These compounds were purified and characterized by standard chromatographic and spectroscopic techniques. Antiacanthamoebic activity of these compounds was determined by amoebicidal, encystation, excystation and host cell cytopathogenicity in vitro assays at concentrations of 50 and 100 µg/mL. The IC50 was found to be between 100 and 50 µg/mL for all the compounds except compound 5 which did not exhibit amoebicidal effects at these concentrations. Furthermore, lactate dehydrogenase assay was also performed to evaluate the in vitro cytotoxicity of these compounds against human keratinocyte (HaCaT) cells. The results revealed that eighteen out of nineteen derivatives of quinazolinones significantly decreased the viability of A. castellanii. Furthermore, eighteen out of nineteen tested compounds inhibited the encystation and excystation, as well as significantly reduced the A. castellanii-mediated cytopathogenicity against human cells. Interestingly, while tested against human normal cell line HaCaT keratinocytes, all compounds did not exhibit any overt cytotoxicity. Furthermore, a detailed structure-activity relationship is also studied to optimize the most potent hit from these synthetic compounds. This report presents several potential lead compounds belonging to 3-aryl-6,7-dimethoxyquinazolin-4(3H)-one derivatives for drug discovery against infections caused by Acanthamoeba castellanii.


Subject(s)
Acanthamoeba castellanii/drug effects , Amebicides/chemistry , Amebicides/pharmacology , Quinazolinones/chemistry , Quinazolinones/pharmacology , Acanthamoeba castellanii/growth & development , Amebiasis/drug therapy , Amebiasis/parasitology , Amebicides/chemical synthesis , Cell Line , Cell Survival/drug effects , Humans , Inhibitory Concentration 50 , Parasite Encystment/drug effects , Quinazolinones/chemical synthesis , Structure-Activity Relationship
11.
Int J Mol Sci ; 21(7)2020 Mar 26.
Article in English | MEDLINE | ID: mdl-32225121

ABSTRACT

MicroRNAs (miRNAs) regulate the expression of target genes in diverse cellular processes and play important roles in different physiological processes. However, little is known about the microRNAome (miRNAome) during encystment of ciliated protozoa. In the current study, we first investigated the differentially expressed miRNAs and relative signaling pathways participating in the transformation of vegetative cells into dormant cysts of Pseudourostyla cristata (P. cristata). A total of 1608 known miRNAs were found in the two libraries. There were 165 miRNAs with 1217 target miRNAs. The total number of differential miRNAs screened between vegetative cells and dormant cysts databases were 449 with p < 0.05 and |log2 fold changes| > 1. Among them, the upregulated and downregulated miRNAs were 243 and 206, respectively. Furthermore, Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis revealed that some of the differentially expressed miRNAs were mainly associated with oxidative phosphorylation, two-component system, and biosynthesis of amino acids. Combining with our bioinformatics analyzes, some differentially expressed miRNAs including miR-143, miR-23b-3p, miR-28, and miR-744-5p participates in the encystment of P. cristata. Based on these findings, we propose a hypothetical signaling network of miRNAs regulating or promoting P. cristata encystment. This study shed new lights on the regulatory mechanisms of miRNAs in encystment of ciliated protozoa.


Subject(s)
Ciliophora/genetics , Gene Regulatory Networks , MicroRNAs/genetics , Parasite Encystment/genetics , Ciliophora/growth & development , MicroRNAs/metabolism , Signal Transduction , Transcriptome
12.
Korean J Parasitol ; 58(3): 287-299, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32615742

ABSTRACT

Cystic echinococcosis (CE) is a zoonotic infection caused by Echinococcus granulosus larvae. It seriously affects the development of animal husbandry and endangers human health. Due to a poor understanding of the cystic fluid formation pathway, there is currently a lack of innovative methods for the prevention and treatment of CE. In this study, the protoscoleces (PSCs) in the encystation process were analyzed by high-throughput RNA sequencing. A total of 32,401 transcripts and 14,903 cDNAs revealed numbers of new genes and transcripts, stage-specific genes, and differently expressed genes. Genes encoding proteins involved in signaling pathways, such as putative G-protein coupled receptor, tyrosine kinases, and serine/threonine protein kinase, were predominantly up-regulated during the encystation process. Antioxidant enzymes included cytochrome c oxidase, thioredoxin glutathione, and glutathione peroxidase were a high expression level. Intriguingly, KEGG enrichment suggested that differentially up-regulated genes involved in the vasopressin-regulated water reabsorption metabolic pathway may play important roles in the transport of proteins, carbohydrates, and other substances. These results provide valuable information on the mechanism of cystic fluid production during the encystation process, and provide a basis for further studies on the molecular mechanisms of growth and development of PSCs.


Subject(s)
Echinococcus granulosus/genetics , Echinococcus granulosus/physiology , Gene Expression Profiling , Parasite Encystment/genetics , Transcriptome/genetics , Animals , Echinococcosis/parasitology
13.
Korean J Parasitol ; 58(6): 675-679, 2020 Dec.
Article in English | MEDLINE | ID: mdl-33412772

ABSTRACT

MYB2 protein was identified as a transcription factor that showed encystation-induced expression in Giardia lamblia. Although nuclear import is essential for the functioning of a transcription factor, an evident nuclear localization signal (NLS) of G. lamblia MYB2 (GlMYB2) has not been defined. Based on putative GlMYB2 NLSs predicted by 2 programs, a series of plasmids expressing hemagglutinin (HA)-tagged GlMYB2 from the promoter of G. lamblia glutamate dehydrogenase were constructed and transfected into Giardia trophozoites. Immunofluorescence assays using anti-HA antibodies indicated that GlMYB2 amino acid sequence #507-#530 was required for the nuclear localization of GlMYB2, and this sequence was named as NLSGlMYB2. We further verified this finding by demonstrating the nuclear location of a protein obtained by the fusion of NLSGlMYB2 and G. lamblia glyceraldehyde 3-phosphate dehydrogenase, a non-nuclear protein. Our data on GlMYB2 will expand our understanding on NLSs functioning in G. lamblia.


Subject(s)
Gene Expression Regulation, Developmental/genetics , Gene Expression , Giardia lamblia/growth & development , Giardia lamblia/physiology , Nuclear Localization Signals/genetics , Nuclear Localization Signals/metabolism , Parasite Encystment/genetics , Trans-Activators/genetics , Trans-Activators/metabolism , Amino Acid Sequence , Giardia lamblia/enzymology , Glutamate Dehydrogenase , Glyceraldehyde 3-Phosphate , Hemagglutinins , Trans-Activators/chemistry
14.
Biochem Biophys Res Commun ; 508(4): 1031-1037, 2019 01 22.
Article in English | MEDLINE | ID: mdl-30545628

ABSTRACT

Entamoeba invadens is a protozoan, which causes multiple damages in reptiles and is considered a prototype for the study of the Entamoeba encystment in vitro. Here we report for the first time the role of the de novo synthesis pathway of sphingolipids during the encystment of E. invadens. In silico analysis showed that this parasite has six putative genes coding for ceramide synthases (CerS), all of them coding for proteins containing the Lag1p motif, a region conserved in the ceramide synthases of multiple organisms, suggesting that they might be bona fide CerS. The six genes of E. invadens are differentially expressed at different time intervals in both stages trophozoite and cyst, based on the results obtained through qRT-PCR assays, the genes involved in the synthesis of sphingolipids with long-chain fatty acids CerS 2,3,4 (EIN_046610, EIN_097030, EIN_130350) have maximum points of relative expression in both stages of the E. invadens life cycle, which strongly suggest that the signaling exerted from the synthesis pathway of sphingolipids is essential for the encystment of E. invadens, since the generation of the more abundant sphingomyelin (SM) subspecies with long-chain fatty acids are fundamental for the parasite to reach its conversion from trophozoite to cyst. When myriocin was used as an inhibitor of serine palmitoyl CoA transferase (SPT), first enzyme in the de novo biosynthesis of sphingolipids, the trophozoites of E. invadens were unable to reach the encystment. Since the effect of myriocin was reversed with exogenous d-erythrosphingosine (DHS), it was demonstrated that the inhibition was specific and it was confirmed that the synthesis of sphingolipids play an essential role during the encystment process of E. invadens.


Subject(s)
Entamoeba/metabolism , Parasite Encystment , Sphingolipids/metabolism , Entamoeba/drug effects , Entamoeba/enzymology , Entamoeba/genetics , Fatty Acids, Monounsaturated/pharmacology , Gene Expression Regulation/drug effects , Humans , Kinetics , Life Cycle Stages/drug effects , Oxidoreductases/genetics , Oxidoreductases/metabolism , Parasite Encystment/drug effects , Phylogeny , Sphingolipids/biosynthesis , Sphingomyelins/metabolism , Sphingosine/analogs & derivatives , Sphingosine/pharmacology , Trophozoites/drug effects , Trophozoites/genetics
15.
Int J Mol Sci ; 20(19)2019 Sep 21.
Article in English | MEDLINE | ID: mdl-31546588

ABSTRACT

Sulfur metabolism is essential for all living organisms. Recently, unique features of the Entamoeba metabolic pathway for sulfated biomolecules have been described. Entamoeba is a genus in the phylum Amoebozoa and includes the causative agent for amoebiasis, a global public health problem. This review gives an overview of the general features of the synthesis and degradation of sulfated biomolecules, and then highlights the characteristics that are unique to Entamoeba. Future biological and pharmaceutical perspectives are also discussed.


Subject(s)
Entamoeba/metabolism , Sulfur/metabolism , Antiprotozoal Agents/pharmacology , Biological Evolution , Entamoeba/drug effects , Entamoeba/genetics , Entamoeba/growth & development , Entamoebiasis/parasitology , Gene Transfer, Horizontal , Humans , Lipid Metabolism , Parasite Encystment , Protozoan Proteins/metabolism , Sulfatases/metabolism , Sulfotransferases/metabolism
16.
Microbiology (Reading) ; 164(5): 727-739, 2018 05.
Article in English | MEDLINE | ID: mdl-29620506

ABSTRACT

Not long ago, protists were considered one of four eukaryote kingdoms, but recent gene-based phylogenies show that they contribute to all nine eukaryote subdomains. The former kingdoms of animals, plants and fungi are now relegated to lower ranks within subdomains. Most unicellular protists respond to adverse conditions by differentiating into dormant walled cysts. As cysts, they survive long periods of starvation, drought and other environmental threats, only to re-emerge when conditions improve. For protists pathogens, the resilience of their cysts can prevent successful treatment or eradication of the disease. In this context, effort has been directed towards understanding the molecular mechanisms that control encystation. We here firstly summarize the prevalence of encystation across protists and next focus on Amoebozoa, where most of the health-related issues occur. We review current data on processes and genes involved in encystation of the obligate parasite Entamoeba histolytica and the opportunistic pathogen Acanthamoeba. We show how the cAMP-mediated signalling pathway that controls spore and stalk cell encapsulation in Dictyostelium fruiting bodies could be retraced to a stress-induced pathway controlling encystation in solitary Amoebozoa. We highlight the conservation and prevalence of cAMP signalling genes in Amoebozoan genomes and the suprisingly large and varied repertoire of proteins for sensing and processing environmental signals in individual species.


Subject(s)
Amoebozoa/growth & development , Cyclic AMP/metabolism , Eukaryota/growth & development , Parasite Encystment , Signal Transduction , Amoebozoa/classification , Cyclic AMP-Dependent Protein Kinases/metabolism , Parasite Encystment/genetics , Phylogeny , Protozoan Proteins/metabolism , Spores, Protozoan/genetics , Spores, Protozoan/growth & development , Stress, Physiological
17.
PLoS Pathog ; 12(12): e1006085, 2016 Dec.
Article in English | MEDLINE | ID: mdl-27930733

ABSTRACT

Entamoeba histolytica is an enteric pathogen responsible for amoebic dysentery and liver abscess. It alternates between the host-restricted trophozoite form and the infective environmentally-stable cyst stage. Throughout its lifecycle E. histolytica experiences stress, in part, from host immune pressure. Conversion to cysts is presumed to be a stress-response. In other systems, stress induces phosphorylation of a serine residue on eukaryotic translation initiation factor-2α (eIF2α). This inhibits eIF2α activity resulting in a general decline in protein synthesis. Genomic data reveal that E. histolytica possesses eIF2α (EheIF2α) with a conserved phosphorylatable serine at position 59 (Ser59). Thus, this pathogen may have the machinery for stress-induced translational control. To test this, we exposed cells to different stress conditions and measured the level of total and phospho-EheIF2α. Long-term serum starvation, long-term heat shock, and oxidative stress induced an increase in the level of phospho-EheIF2α, while short-term serum starvation, short-term heat shock, or glucose deprivation did not. Long-term serum starvation also caused a decrease in polyribosome abundance, which is in accordance with the observation that this condition induces phosphorylation of EheIF2α. We generated transgenic cells that overexpress wildtype EheIF2α, a non-phosphorylatable variant of eIF2α in which Ser59 was mutated to alanine (EheIF2α-S59A), or a phosphomimetic variant of eIF2α in which Ser59 was mutated to aspartic acid (EheIF2α-S59D). Consistent with the known functions of eIF2α, cells expressing wildtype or EheIF2α-S59D exhibited increased or decreased translation, respectively. Surprisingly, cells expressing EheIF2α-S59A also exhibited reduced translation. Cells expressing EheIF2α-S59D were more resistant to long-term serum starvation underscoring the significance of EheIF2α phosphorylation in managing stress. Finally, phospho-eIF2α accumulated during encystation in E. invadens, a model encystation system. Together, these data demonstrate that the eIF2α-dependent stress response system is operational in Entamoeba species.


Subject(s)
Entamoeba/physiology , Eukaryotic Initiation Factor-2/metabolism , Parasite Encystment/physiology , Stress, Physiological/physiology , Blotting, Western , Mutagenesis, Site-Directed , Organisms, Genetically Modified , Phosphorylation , Polymerase Chain Reaction
18.
PLoS Biol ; 13(11): e1002288, 2015.
Article in English | MEDLINE | ID: mdl-26565995

ABSTRACT

The major membrane phospholipid classes, described thus far, include phosphatidylcholine (PtdCho), phosphatidylethanolamine (PtdEtn), phosphatidylserine (PtdSer), and phosphatidylinositol (PtdIns). Here, we demonstrate the natural occurrence and genetic origin of an exclusive and rather abundant lipid, phosphatidylthreonine (PtdThr), in a common eukaryotic model parasite, Toxoplasma gondii. The parasite expresses a novel enzyme PtdThr synthase (TgPTS) to produce this lipid in its endoplasmic reticulum. Genetic disruption of TgPTS abrogates de novo synthesis of PtdThr and impairs the lytic cycle and virulence of T. gondii. The observed phenotype is caused by a reduced gliding motility, which blights the parasite egress and ensuing host cell invasion. Notably, the PTS mutant can prevent acute as well as yet-incurable chronic toxoplasmosis in a mouse model, which endorses its potential clinical utility as a metabolically attenuated vaccine. Together, the work also illustrates the functional speciation of two evolutionarily related membrane phospholipids, i.e., PtdThr and PtdSer.


Subject(s)
Endoplasmic Reticulum/enzymology , Glycerophospholipids/metabolism , Protozoan Proteins/metabolism , Threonine/analogs & derivatives , Toxoplasma/physiology , Transferases (Other Substituted Phosphate Groups)/metabolism , Animals , Brain/immunology , Brain/parasitology , Brain/pathology , Cells, Cultured , Endoplasmic Reticulum/metabolism , Humans , Mice , Molecular Sequence Data , Mutation , Organisms, Genetically Modified/immunology , Organisms, Genetically Modified/metabolism , Parasite Encystment , Peptide Fragments/chemistry , Peptide Fragments/genetics , Peptide Fragments/metabolism , Protein Interaction Domains and Motifs , Protozoan Proteins/chemistry , Protozoan Proteins/genetics , Protozoan Vaccines/therapeutic use , Recombinant Fusion Proteins/chemistry , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Skin/cytology , Skin/immunology , Skin/metabolism , Skin/parasitology , Threonine/metabolism , Toxoplasma/genetics , Toxoplasma/immunology , Toxoplasma/pathogenicity , Toxoplasmosis/immunology , Toxoplasmosis/parasitology , Toxoplasmosis/pathology , Toxoplasmosis/prevention & control , Transferases (Other Substituted Phosphate Groups)/chemistry , Transferases (Other Substituted Phosphate Groups)/genetics , Vaccines, Attenuated/therapeutic use , Virulence
19.
Korean J Parasitol ; 56(5): 491-494, 2018 Oct.
Article in English | MEDLINE | ID: mdl-30419735

ABSTRACT

Multipurpose contact lens disinfecting solutions (MPDS) are widely used to cleanse and disinfect microorganisms. However, disinfection efficacy of these MPDS against Acanthamoeba cyst remain insufficient. 2, 6-dichlorobenzonitrile (DCB), a cellulose synthesis inhibitor, is capable of increasing the amoebical effect against Acanthamoeba by inhibiting its encystation. In this study, we investigated the possibility of DCB as a disinfecting agent to improve the amoebicidal activity of MPDS against Acanthamoeba cyst. Eight commercial MPDS (from a to h) were assessed, all of which displayed insufficient amoebicidal activity against the mature cysts. Solution e, f, and h showed strong amoebicidal effect on the immature cysts. Amoebicidal efficacy against mature cysts remained inadequate even when the 8 MPDS were combined with 100 µM DCB. However, 4 kinds of MPDS (solution d, e, f, and h) including 100 µM DCB demonstrated strong amoebicidal activity against the immature cysts. The amoebicidal activity of solution d was increased by addition of DCB. Cytotoxicity was absent in human corneal epithelial cells treated with either DCB or mixture of DCB with MPDS. These results suggested that DCB can enhance the amoebicical activity of MPDS against Acanthamoeba immature cyst in vitro.


Subject(s)
Acanthamoeba/drug effects , Amebicides/pharmacology , Contact Lens Solutions/pharmacology , Nitriles/pharmacology , Acanthamoeba/metabolism , Cells, Cultured , Cellulose/metabolism , Contact Lens Solutions/adverse effects , Contact Lenses/parasitology , Epithelial Cells/drug effects , Epithelium, Corneal/drug effects , Humans , Nitriles/adverse effects , Parasite Encystment/drug effects
20.
J Negat Results Biomed ; 16(1): 6, 2017 Apr 03.
Article in English | MEDLINE | ID: mdl-28366172

ABSTRACT

BACKGROUND: Gold compounds have shown promise in the treatment of non-communicable diseases such as rheumatoid arthritis and cancer, and are considered of value as anti-microbial agents against Gram-negative and Gram-positive bacteria, and have anti-parasitic properties against Schistosoma mansoni, Trypanosoma brucei, Plasmodium falciparum, Leishmania infantinum, Giardia lamblia, and Entamoeba histolytica. They are known to affect enzymatic activities that are required for the cellular respiration processes. METHODS: Anti-amoebic effects of phosphanegold(I) thiolates were tested against clinical isolate of A. castellanii belonging to the T4 genotype by employing viability assays, growth inhibition assays, encystation assays, excystation assays, and zymographic assays. RESULTS: The treatment of A. castellanii with the phosphanegold(I) thiolates tested (i) had no effect on the viability of A. castellanii as determined by Trypan blue exclusion test, (ii) did not affect amoebae growth using PYG growth medium, (iii) did not inhibit cellular differentiation, and (iv) had no effect on the extracellular proteolytic activities of A. castellanii. CONCLUSION: Being free-living amoeba, A. castellanii is a versatile respirator and possesses respiratory mechanisms that adapt to various aerobic and anaerobic environments to avoid toxic threats and adverse conditions. For the first time, our findings showed that A. castellanii exhibits resistance to the toxic effects of gold compounds and could prove to be an attractive model to study mechanisms of metal resistance in eukaryotic cells.


Subject(s)
Acanthamoeba castellanii/genetics , Gold Compounds/pharmacology , Sulfhydryl Compounds/pharmacology , Acanthamoeba castellanii/drug effects , Acanthamoeba castellanii/growth & development , Cell Survival/drug effects , Genotype , Gold Compounds/chemistry , Parasite Encystment/drug effects , Proteolysis/drug effects , Sulfhydryl Compounds/chemistry , Trophozoites/drug effects , Trophozoites/physiology
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