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1.
Braz J Microbiol ; 54(4): 2577-2585, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37442880

ABSTRACT

Scedosporium apiospermum is a widespread, emerging, and multidrug-resistant filamentous fungus that can cause localized and disseminated infections. The initial step in the infection process involves the adhesion of the fungus to host cells and/or extracellular matrix components. However, the mechanisms of adhesion involving surface molecules in S. apiospermum are not well understood. Previous studies have suggested that the binding of fungal receptors to fibronectin enhances its ability to attach to and infect host cells. The present study investigated the effects of fibronectin on adhesion events of S. apiospermum. The results revealed that conidial cells were able to bind to both immobilized and soluble human fibronectin in a typically dose-dependent manner. Moreover, fibronectin binding was virtually abolished in trypsin-treated conidia, suggesting the proteinaceous nature of the binding site. Western blotting assay, using fibronectin and anti-fibronectin antibody, evidenced 7 polypeptides with molecular masses ranging from 55 to 17 kDa in both conidial and mycelial extracts. Fibronectin-binding molecules were localized by immunofluorescence and immunocytochemistry microscopies at the cell wall and in intracellular compartments of S. apiospermum cells. Furthermore, a possible function for the fibronectin-like molecules of S. apiospermum in the interaction with host lung cells was assessed. Conidia pre-treated with soluble fibronectin showed a significant reduction in adhesion to either epithelial or fibroblast lung cells in a classically dose-dependent manner. Similarly, the pre-treatment of the lung cells with anti-fibronectin antibodies considerably diminished the adhesion. Collectively, the results demonstrated the presence of fibronectin-binding molecules in S. apiospermum cells and their role in adhesive events.


Subject(s)
Scedosporium , Humans , Fibronectins/metabolism , Mycelium/metabolism , Lung
2.
Front Neural Circuits ; 17: 1138358, 2023.
Article in English | MEDLINE | ID: mdl-37334059

ABSTRACT

The anterior cingulate cortex (ACC) plays a crucial role in encoding, consolidating and retrieving memories related to emotionally salient experiences, such as aversive and rewarding events. Various studies have highlighted its importance for fear memory processing, but its circuit mechanisms are still poorly understood. Cortical layer 1 (L1) of the ACC might be a particularly important site of signal integration, since it is a major entry point for long-range inputs, which is tightly controlled by local inhibition. Many L1 interneurons express the ionotropic serotonin receptor 3a (5HT3aR), which has been implicated in post-traumatic stress disorder and in models of anxiety. Hence, unraveling the response dynamics of L1 interneurons and subtypes thereof during fear memory processing may provide important insights into the microcircuit organization regulating this process. Here, using 2-photon laser scanning microscopy of genetically encoded calcium indicators through microprisms in awake mice, we longitudinally monitored over days the activity of L1 interneurons in the ACC in a tone-cued fear conditioning paradigm. We observed that tones elicited responses in a substantial fraction of the imaged neurons, which were significantly modulated in a bidirectional manner after the tone was associated to an aversive stimulus. A subpopulation of these neurons, the neurogliaform cells (NGCs), displayed a net increase in tone-evoked responses following fear conditioning. Together, these results suggest that different subpopulations of L1 interneurons may exert distinct functions in the ACC circuitry regulating fear learning and memory.


Subject(s)
Conditioning, Classical , Fear , Gyrus Cinguli , Interneurons , Animals , Mice , Fear/physiology , Gyrus Cinguli/cytology , Gyrus Cinguli/physiology , Interneurons/physiology , Memory/physiology , Conditioning, Classical/physiology , Male , Calcium Signaling , Receptors, Serotonin/metabolism , Neuroglia/physiology
3.
Trends Cogn Sci ; 27(4): 404-416, 2023 04.
Article in English | MEDLINE | ID: mdl-36813591

ABSTRACT

Traumatic events generate some of the most enduring memories, yet little is known about how long-lasting fear memories can be attenuated. In this review, we collect the surprisingly sparse evidence on remote fear memory attenuation from both animal and human research. What is becoming apparent is twofold: although remote fear memories are more resistant to change compared with recent ones, they can nevertheless be attenuated when interventions are targeted toward the period of memory malleability instigated by memory recall, the reconsolidation window. We describe the physiological mechanisms underlying remote reconsolidation-updating approaches and highlight how they can be enhanced through interventions promoting synaptic plasticity. By capitalizing on an intrinsically relevant phase of memory, reconsolidation-updating harbors the potential to permanently alter remote fear memories.


Subject(s)
Memory, Long-Term , Memory , Animals , Humans , Memory/physiology , Fear/physiology , Neuronal Plasticity , Extinction, Psychological/physiology
4.
Pharmaceutics ; 14(11)2022 Oct 22.
Article in English | MEDLINE | ID: mdl-36365077

ABSTRACT

The development of X-ray-absorbing scintillating nanoparticles is of high interest for solving the short penetration depth problem of visible and infrared light in photodynamic therapy (PDT). Thus, these nanoparticles are considered a promising treatment for several types of cancer. Herein, gadolinium oxide nanoparticles doped with europium ions (Gd2O3:Eu3+) were obtained by using polyvinyl alcohol as a capping agent. Hybrid silica nanoparticles decorated with europium-doped gadolinium oxide (SiO2-Gd2O3:Eu3+) were also prepared through the impregnation method. The synthesized nanoparticles were structurally characterized and tested to analyze their biocompatibility. X-ray diffraction, scanning electron microscopy, and transmission electron microscopy confirmed the high crystallinity and purity of the Gd2O3:Eu3+ particles and the homogeneous distribution of nanostructured rare earth oxides throughout the fumed silica matrix for SiO2-Gd2O3:Eu3+. Both nanoparticles displayed stable negative ζ-potentials. The photoluminescence properties of the materials were obtained using a Xe lamp as an excitation source, and they exhibited characteristic Eu3+ bands, including at 610 nm, which is the most intense transition band of this ion. Cytotoxicity studies on mouse glioblastoma GL261 cells indicated that these materials appear to be nontoxic from 10 to 500 µg·mL-1 and show a small reduction in viability in non-tumor cell lines. All these findings demonstrate their possible use as alternative materials in PDT.

5.
Nat Neurosci ; 24(7): 964-974, 2021 07.
Article in English | MEDLINE | ID: mdl-34017129

ABSTRACT

Fear and trauma generate some of the longest-lived memories. Despite the corresponding need to understand how such memories can be attenuated, the underlying brain circuits remain unknown. Here, combining viral tracing, neuronal activity mapping, fiber photometry, chemogenetic and closed-loop optogenetic manipulations in mice, we show that the extinction of remote (30-day-old) fear memories depends on thalamic nucleus reuniens (NRe) inputs to the basolateral amygdala (BLA). We found that remote, but not recent (1-day-old), fear extinction activates NRe-to-BLA inputs, which become potentiated upon fear reduction. Furthermore, both monosynaptic NRe-to-BLA and total NRe activity increase shortly before freezing cessation, suggesting that the NRe registers and transmits safety signals to the BLA. Accordingly, pan-NRe and pathway-specific NRe-to-BLA inhibition impairs, whereas their activation facilitates, remote fear extinction. These findings identify the NRe as a crucial BLA regulator for extinction and provide the first functional description of the circuits underlying the attenuation of consolidated fear memories.


Subject(s)
Amygdala/physiology , Extinction, Psychological/physiology , Fear/physiology , Memory, Long-Term/physiology , Thalamus/physiology , Animals , Mice , Mice, Inbred C57BL , Neural Pathways/physiology
6.
J Am Coll Cardiol ; 77(10): 1277-1286, 2021 03 16.
Article in English | MEDLINE | ID: mdl-33706868

ABSTRACT

BACKGROUND: Dual antiplatelet therapy is recommended for patients with acute coronary syndromes (ACS). Approximately 10% to 15% of these patients will undergo coronary artery bypass graft (CABG) surgery for index events, and current guidelines recommend stopping clopidogrel at least 5 days before CABG. This waiting time has clinical and economic implications. OBJECTIVES: This study aimed to evaluate if a platelet reactivity-based strategy is noninferior to standard of care for 24-h post-CABG bleeding. METHODS: In this randomized, open label noninferiority trial, 190 patients admitted with ACS with indications for CABG and on aspirin and P2Y12 receptor inhibitors, were assigned to either control group, P2Y12 receptor inhibitor withdrawn 5 to 7 days before CABG, or intervention group, daily measurements of platelet reactivity by Multiplate analyzer (Roche Diagnostics GmbH, Vienna, Austria) with CABG planned the next working day after platelet reactivity normalization (pre-defined as ≥46 aggregation units). RESULTS: Within the first 24 h of CABG, the median chest tube drainage was 350 ml (interquartile range [IQR]: 250 to 475 ml) and 350 ml (IQR: 255 to 500 ml) in the intervention and control groups, respectively (p for noninferiority <0.001). The median waiting period between the decision to undergo CABG and the procedure was 112 h (IQR: 66 to 142 h) and 136 h (IQR: 112 to 161 h) (p < 0.001), respectively. In the intention-to-treat analysis, a 6.4% decrease in the median in-hospital expenses was observed in the intervention group (p = 0.014), with 11.2% decrease in the analysis per protocol (p = 0.003). CONCLUSIONS: A strategy based on platelet reactivity-guided is noninferior to the standard of care in patients with ACS awaiting CABG regarding peri-operative bleeding, significantly shortens the waiting time to CABG, and decreases hospital expenses. (Evaluation of Platelet Aggregability in the Release of CABG in Patients With ACS With DAPT; NCT02516267).


Subject(s)
Acute Coronary Syndrome/drug therapy , Blood Coagulation Tests/instrumentation , Coronary Artery Bypass/statistics & numerical data , Purinergic P2Y Receptor Antagonists/administration & dosage , Time-to-Treatment/statistics & numerical data , Acute Coronary Syndrome/economics , Acute Coronary Syndrome/surgery , Aged , Aspirin/administration & dosage , Aspirin/adverse effects , Blood Transfusion/statistics & numerical data , Female , Hospital Costs/statistics & numerical data , Humans , Male , Middle Aged , Platelet Aggregation Inhibitors/administration & dosage , Platelet Aggregation Inhibitors/adverse effects , Postoperative Hemorrhage/chemically induced , Postoperative Hemorrhage/prevention & control , Preoperative Care/instrumentation , Purinergic P2Y Receptor Antagonists/adverse effects
7.
J Neurosci ; 40(48): 9283-9292, 2020 11 25.
Article in English | MEDLINE | ID: mdl-33115925

ABSTRACT

The ventromedial hypothalamus is a central node of the mammalian predator defense network. Stimulation of this structure in rodents and primates elicits abrupt defensive responses, including flight, freezing, sympathetic activation, and panic, while inhibition reduces defensive responses to predators. The major efferent target of the ventromedial hypothalamus is the dorsal periaqueductal gray (dPAG), and stimulation of this structure also elicits flight, freezing, and sympathetic activation. However, reversible inhibition experiments suggest that the ventromedial hypothalamus and periaqueductal gray play distinct roles in the control of defensive behavior, with the former proposed to encode an internal state necessary for the motivation of defensive responses, while the latter serves as a motor pattern initiator. Here, we used electrophysiological recordings of single units in behaving male mice exposed to a rat to investigate the encoding of predator fear in the dorsomedial division of the ventromedial hypothalamus (VMHdm) and the dPAG. Distinct correlates of threat intensity and motor responses were found in both structures, suggesting a distributed encoding of sensory and motor features in the medial hypothalamic-brainstem instinctive network.SIGNIFICANCE STATEMENT Although behavioral responses to predatory threat are essential for survival, the underlying neuronal circuits remain undefined. Using single unit in vivo electrophysiological recordings in mice, we have identified neuronal populations in the medial hypothalamus and brainstem that encode defensive responses to a rat predator. We found that both structures encode both sensory as well as motor aspects of the behavior although with different kinetics. Our findings provide a framework for understanding how innate sensory cues are processed to elicit adaptive behavioral responses to threat and will help to identify targets for the pharmacological modulation of related pathologic behaviors.


Subject(s)
Fear/physiology , Periaqueductal Gray/physiology , Predatory Behavior , Ventromedial Hypothalamic Nucleus/physiology , Animals , Cues , Electrodes, Implanted , Electrophysiological Phenomena , Male , Mice , Mice, Inbred C57BL , Optogenetics , Rats , Sympathetic Nervous System/physiology
8.
Mol Psychiatry ; 25(9): 2144-2161, 2020 09.
Article in English | MEDLINE | ID: mdl-30089788

ABSTRACT

Aggression is frequently observed in neurodevelopmental psychiatric disorders such as schizophrenia, autism, and bipolar disorder. Due to a lack of understanding of its underlying mechanisms, effective treatments for abnormal aggression are still missing. Recently, genetic variations in Sialyltransferase 2 (St8sia2) have been linked to these disorders and aggression. Here we identify abnormal aggressive behaviors and concomitant blunted fear learning in St8sia2 knockout (-/-) mice. It is worth noting that the amygdala of St8sia2-/- mice shows diminished threat-induced activation, as well as alterations in synaptic structure and function, including impaired GluN2B-containing NMDA receptor-mediated synaptic transmission and plasticity. Pharmacological rescue of NMDA receptor activity in the amygdala of St8sia2-/- mice with the partial agonist D-cycloserine restores synaptic plasticity and normalizes behavioral aberrations. Pathological aggression and associated traits were recapitulated by specific amygdala neonatal St8sia2 silencing. Our results establish a developmental link between St8sia2 deficiency and a pathological aggression syndrome, specify synaptic targets for therapeutic developments, and highlight D-cycloserine as a plausible treatment.


Subject(s)
Aggression , Amygdala , Receptors, N-Methyl-D-Aspartate , Sialyltransferases , Amygdala/metabolism , Animals , Mice , Mice, Inbred C57BL , Mice, Knockout , Phenotype , Receptors, N-Methyl-D-Aspartate/genetics , Receptors, N-Methyl-D-Aspartate/metabolism , Sialyltransferases/genetics
9.
Psychopharmacology (Berl) ; 236(1): 369-381, 2019 Jan.
Article in English | MEDLINE | ID: mdl-30116860

ABSTRACT

RATIONALE: The experience of strong traumata leads to the formation of enduring fear memories that may degenerate into post-traumatic stress disorder. One of the most successful treatments for this condition consists of extinction training during which the repeated exposure to trauma-inducing stimuli in a safe environment results in an attenuation of the fearful component of trauma-related memories. While numerous studies have investigated the neural substrates of recent (e.g., 1-day-old) fear memory attenuation, much less is known about the neural networks mediating the attenuation of remote (e.g., 30-day-old) fear memories. Since extinction training becomes less effective when applied long after the original encoding of the traumatic memory, this represents an important gap in memory research. OBJECTIVES: Here, we aimed to generate a comprehensive map of brain activation upon effective remote fear memory attenuation in the mouse. METHODS: We developed an efficient extinction training paradigm for 1-month-old contextual fear memory attenuation and performed cFos immunohistochemistry and network connectivity analyses on a set of cortical, amygdalar, thalamic, and hippocampal regions. RESULTS: Remote fear memory attenuation induced cFos in the prelimbic cortex, the basolateral amygdala, the nucleus reuniens of the thalamus, and the ventral fields of the hippocampal CA1 and CA3. All these structures were equally recruited by remote fear memory recall, but not by the recall of a familiar neutral context. CONCLUSION: These results suggest that progressive fear attenuation mediated by repetitive exposure is accompanied by sustained neuronal activation and not reverted to a pre-conditioning brain state. These findings contribute to the identification of brain areas as targets for therapeutic approaches against traumatic memories.


Subject(s)
Brain/physiopathology , Disease Models, Animal , Fear/physiology , Memory, Long-Term/physiology , Proto-Oncogene Proteins c-fos/metabolism , Stress Disorders, Post-Traumatic/physiopathology , Animals , Brain Mapping , Extinction, Psychological/physiology , Fear/psychology , Humans , Implosive Therapy , Mental Recall/physiology , Mice , Mice, Inbred C57BL , Nerve Net/physiopathology , Neurons/physiology , Stress Disorders, Post-Traumatic/therapy
10.
Nat Med ; 24(5): 598-603, 2018 05.
Article in English | MEDLINE | ID: mdl-29736028

ABSTRACT

The chances to develop Alzheimer's disease (AD) result from a combination of genetic and non-genetic risk factors 1 , the latter likely being mediated by epigenetic mechanisms 2 . In the past, genome-wide association studies (GWAS) have identified an important number of risk loci associated with AD pathology 3 , but a causal relationship remains difficult to establish. In contrast, locus-specific or epigenome-wide association studies (EWAS) have revealed site-specific epigenetic alterations, which provide mechanistic insights for a particular risk gene but often lack the statistical power of GWAS 4 . Here, combining both approaches, we report a previously unidentified association of the peptidase M20-domain-containing protein 1 (PM20D1) with AD. We find that PM20D1 is a methylation and expression quantitative trait locus coupled to an AD-risk associated haplotype, which displays enhancer-like characteristics and contacts the PM20D1 promoter via a haplotype-dependent, CCCTC-binding-factor-mediated chromatin loop. Furthermore, PM20D1 is increased following AD-related neurotoxic insults at symptomatic stages in the APP/PS1 mouse model of AD and in human patients with AD who are carriers of the non-risk haplotype. In line, genetically increasing or decreasing the expression of PM20D1 reduces and aggravates AD-related pathologies, respectively. These findings suggest that in a particular genetic background, PM20D1 contributes to neuroprotection against AD.


Subject(s)
Alzheimer Disease/genetics , Amidohydrolases/genetics , Quantitative Trait Loci/genetics , Aged , Amidohydrolases/metabolism , Amyloid beta-Peptides/metabolism , Animals , Cell Line, Tumor , Chromatin/metabolism , Female , Frontal Lobe/metabolism , Frontal Lobe/pathology , Genome-Wide Association Study , Humans , Hydrogen Peroxide/metabolism , Linkage Disequilibrium/genetics , Male , Mice , Middle Aged , Polymorphism, Single Nucleotide/genetics
11.
Nat Neurosci ; 20(2): 260-270, 2017 02.
Article in English | MEDLINE | ID: mdl-28067904

ABSTRACT

The prefrontal cortex helps adjust an organism's behavior to its environment. In particular, numerous studies have implicated the prefrontal cortex in the control of social behavior, but the neural circuits that mediate these effects remain unknown. Here we investigated behavioral adaptation to social defeat in mice and uncovered a critical contribution of neural projections from the medial prefrontal cortex to the dorsal periaqueductal gray, a brainstem area vital for defensive responses. Social defeat caused a weakening of functional connectivity between these two areas, and selective inhibition of these projections mimicked the behavioral effects of social defeat. These findings define a specific neural projection by which the prefrontal cortex can control and adapt social behavior.


Subject(s)
Behavior, Animal/physiology , Brain Stem/physiology , Neural Pathways/physiology , Prefrontal Cortex/physiology , Social Behavior , Animals , Mice , Mice, Inbred C57BL , Models, Animal , Periaqueductal Gray/physiology
12.
Learn Mem ; 23(10): 544-55, 2016 10.
Article in English | MEDLINE | ID: mdl-27634145

ABSTRACT

How fear is represented in the brain has generated a lot of research attention, not only because fear increases the chances for survival when appropriately expressed but also because it can lead to anxiety and stress-related disorders when inadequately processed. In this review, we summarize recent progress in the understanding of the neural circuits processing innate fear in rodents. We propose that these circuits are contained within three main functional units in the brain: a detection unit, responsible for gathering sensory information signaling the presence of a threat; an integration unit, responsible for incorporating the various sensory information and recruiting downstream effectors; and an output unit, in charge of initiating appropriate bodily and behavioral responses to the threatful stimulus. In parallel, the experience of innate fear also instructs a learning process leading to the memorization of the fearful event. Interestingly, while the detection, integration, and output units processing acute fear responses to different threats tend to be harbored in distinct brain circuits, memory encoding of these threats seems to rely on a shared learning system.


Subject(s)
Brain/physiology , Fear/physiology , Animals , Humans , Memory/physiology , Motor Activity/physiology , Neural Pathways/physiology , Rodentia
13.
Eur J Neurosci ; 43(11): 1431-9, 2016 06.
Article in English | MEDLINE | ID: mdl-26991018

ABSTRACT

The amygdala has been shown to be essential for the processing of acute and learned fear across animal species. However, the downstream neural circuits that mediate these fear responses differ according to the nature of the threat, with separate pathways having been identified for predator, conspecific and physically harmful threats. In particular, the dorsomedial part of the ventromedial hypothalamus (VHMdm) is critical for the expression of defensive responses to predators. Here, we tested the hypothesis that this circuit also participates in predator fear memory by transient pharmacogenetic inhibition of the VMHdm and its downstream effector, the dorsal periaqueductal grey, during predator fear learning in the mouse. Our data demonstrate that neural activity in the VMHdm is required for both the acquisition and recall of predator fear memory, whereas that of its downstream effector, the dorsal periaqueductal grey, is required only for the acute expression of fear. These findings are consistent with a role for the medial hypothalamus in encoding an internal emotional state of fear.


Subject(s)
Fear/physiology , Learning/physiology , Mental Recall/physiology , Ventromedial Hypothalamic Nucleus/physiology , Animals , Female , Male , Mice , Mice, Inbred C57BL , Neural Pathways/physiology , Periaqueductal Gray/physiology
14.
Nat Neurosci ; 16(12): 1731-3, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24212674

ABSTRACT

The neural circuits mediating fear to naturalistic threats are poorly understood. We found that functionally independent populations of neurons in the ventromedial hypothalamus (VMH), a region that has been implicated in feeding, sex and aggression, are essential for predator and social fear in mice. Our results establish a critical role for VMH in fear and have implications for selective intervention in pathological fear in humans.


Subject(s)
Fear/psychology , Hypothalamus/cytology , Nerve Net/physiology , Neurons/physiology , Predatory Behavior , Social Behavior , Action Potentials/drug effects , Animals , Antipsychotic Agents/pharmacology , Clozapine/analogs & derivatives , Clozapine/pharmacology , Dependovirus/genetics , Electroshock/adverse effects , Female , Freezing Reaction, Cataleptic/physiology , Hypothalamus/metabolism , In Vitro Techniques , Luminescent Proteins/genetics , Luminescent Proteins/metabolism , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Neurons/drug effects , Plant Lectins/genetics , Plant Lectins/metabolism , Protein Prenylation , Proto-Oncogene Proteins c-fos/metabolism , Rats , Rats, Inbred SHR , Steroidogenic Factor 1/genetics , Synapsins/metabolism
15.
Mycoses ; 54(2): 105-12, 2011 Mar.
Article in English | MEDLINE | ID: mdl-19702620

ABSTRACT

Scedosporium apiospermum is an emerging agent of opportunistic mycoses in humans. Previously, we showed that mycelia of S. apiospermum secreted metallopeptidases which were directly linked to the destruction of key host proteins. In this study, we analysed the effect of metallopeptidase inhibitors on S. apiospermum development. As germination of inhaled conidia is a crucial event in the infectious process of S. apiospermum, we studied the morphological transformation induced by the incubation of conidia in Sabouraud-dextrose medium at 37 °C. After 6 h, some conidia presented a small projection resembling a germ-tube. A significant increase, around sixfold, in the germ-tube length was found after 12 h, and hyphae were exclusively observed after 24 h. Three distinct metallopeptidase inhibitors were able to arrest the transformation of conidia into hyphae in different ways; for instance, 1,10-phenanthroline (PHEN) completely blocked this process at 10 µmol l(-1), while ethylenediamine tetraacetic acid (EDTA) and ethylene glycol-bis (ß-aminoethyl ether; EGTA) only partially inhibited the differentiation at up to 10 mmol l(-1). EGTA did not promote any significant reduction in the conidial growth, while PHEN and EDTA, both at 10 mmol l(-1), inhibited the proliferation around 100% and 65%, respectively. The secretion of polypeptides into the extracellular environment and the metallopeptidase activity secreted by mycelia were completely inhibited by PHEN. These findings suggest that metallo-type enzymes could be potential targets for future therapeutic interventions against S. apiospermum.


Subject(s)
Enzyme Inhibitors/pharmacology , Fungal Proteins/antagonists & inhibitors , Metalloproteases/antagonists & inhibitors , Scedosporium/drug effects , Scedosporium/growth & development , Mycelium/drug effects , Mycelium/growth & development , Scedosporium/enzymology
16.
FEMS Microbiol Lett ; 295(2): 274-80, 2009 Jun.
Article in English | MEDLINE | ID: mdl-19459976

ABSTRACT

Herpetomonas megaseliae is a monoxenic trypanosomatid isolated from the phorid fly Megaselia scalaris. In the present report, the expression of cell surface sialoglycoconjugates in this parasite was analyzed by Western blotting, flow cytometry and fluorescence microscopy analyses using lectins that specifically recognize sialic acid residues. A strong reaction was detected when parasites were treated with Limax flavus, Maackia amurensis and Sambucus nigra lectins. Analysis of crude protein extracts by Western blotting revealed that bands with molecular masses ranging from 19 to 80 kDa were reactive to these lectins, which showed a sugar-inhibited recognition with the parasite extract. These results indicated that molecules containing alpha2,3- and alpha2,6-sialylgalactosyl sequences are present in this protozoan. The role of the surface sialomolecules in the interaction with explanted guts from Aedes aegypti was assessed. The interaction of H. megaseliae with the insect gut was strongly inhibited in the presence of mucin (71%), fetuin (68%) and sialyllactose (68%). Collectively, our results suggest a possible involvement of sialomolecules in the interaction between this insect trypanosomatid and the invertebrate host.


Subject(s)
Aedes/parasitology , Epithelial Cells/parasitology , Glycoconjugates/metabolism , Host-Parasite Interactions , N-Acetylneuraminic Acid/metabolism , Trypanosomatina/physiology , Aedes/cytology , Animals , Blotting, Western , Cell Adhesion , Culture Media , Female , Flow Cytometry , Lectins/metabolism , Microscopy, Fluorescence , Plant Lectins , Ribosome Inactivating Proteins , Trypanosomatina/chemistry , Trypanosomatina/metabolism
17.
Med Mycol ; 47(4): 375-86, 2009 Jun.
Article in English | MEDLINE | ID: mdl-19235547

ABSTRACT

The ubiquitous Pseudallescheria boydii (anamorph Scedosporium apiospermum) is a saprophytic filamentous fungus recognized as a potent etiologic agent of a wide variety of infections in immunocompromised as well as in immunocompetent patients. Very little is known about the virulence factors expressed by this fungal pathogen. The present review provides an overview of recent discoveries related to the identification and biochemical characterization of potential virulence attributes produced by P. boydii, with special emphasis on surface and released molecules. These structures include polysaccharides (glucans), glycopeptides (peptidorhamnomannans), glycolipids (glucosylceramides) and hydrolytic enzymes (proteases, phosphatases and superoxide dismutase), which have been implicated in some fundamental cellular processes in P. boydii including growth, differentiation and interaction with host molecules. Elucidation of the structure of cell surface components as well as the secreted molecules, especially those that function as virulence determinants, is of great relevance to understand the pathogenic mechanisms of P. boydii.


Subject(s)
Pseudallescheria/genetics , Virulence Factors/genetics , Cell Adhesion Molecules/genetics , Cell Adhesion Molecules/metabolism , Humans , Peptide Hydrolases/genetics , Peptide Hydrolases/metabolism
18.
Acta Trop ; 106(3): 143-8, 2008 Jun.
Article in English | MEDLINE | ID: mdl-18423419

ABSTRACT

Leishmania (Viannia) braziliensis is the major causative agent of American tegumentary leishmaniasis, a disease that encompasses a broad spectrum of clinical manifestations. In a previous study, we showed that Brazilian and Colombian L. braziliensis strains, isolated from patients with distinct clinical manifestations, display different pattern of metalloprotease activities. Following these results, we investigated the cellular localization of these molecules and their relation to the major surface protease (gp63) of Leishmania. Comparative analyses of metalloprotease expression among different clinical isolates as well as an evaluation of the effect of long-term in vitro passage on the expression pattern of these metalloproteases were also performed. Western blot analysis, using an anti-gp63 antibody, revealed polypeptide patterns with a similar profile to that observed in zymographic analysis. Flow cytometry and fluorescence microscopy analyses corroborated the presence of metalloproteases with homologous domains to gp63 in the parasites and revealed differences in the expression level of such molecules among the isolates. The cellular distribution of metalloproteases, assessed by confocal analysis, showed the existence of intracellular metalloproteases with homologous domains to gp63, predominantly located near the flagellar pocket. Finally, it was observed that differential zymographic profiles of metalloproteases exhibited by L. (V.) braziliensis isolates remain unaltered during prolonged in vitro culture, suggesting that the proteolytic activity pattern is a stable phenotypic characteristic of these parasites.


Subject(s)
Leishmania braziliensis/chemistry , Metalloendopeptidases/analysis , Protozoan Proteins/analysis , Animals , Blotting, Western , Brazil , Colombia , Flagella/chemistry , Flow Cytometry , Humans , Leishmania braziliensis/isolation & purification , Leishmaniasis/parasitology , Metalloendopeptidases/immunology , Microscopy, Confocal , Microscopy, Fluorescence , Proteome/analysis , Protozoan Proteins/immunology , Serial Passage
19.
Res Microbiol ; 157(5): 425-32, 2006 Jun.
Article in English | MEDLINE | ID: mdl-16487686

ABSTRACT

Pseudallescheria boydii is an opportunistic filamentous fungus that causes serious infections in humans. Virulence attributes expressed by P. boydii are unknown. Conversely, peptidases are incriminated as virulence factors in several pathogenic fungi. Here we investigated the extracellular peptidase profile in P. boydii. After growth on Sabouraud for 7 days, mycelia of P. boydii were incubated for 20 h in PBS-glucose. The cell-free PBS-glucose supernatant was submitted to SDS-PAGE and 12 secretory polypeptides were observed. Two of these polypeptides (28 and 35 kD) presented proteolytic activity when BSA was used as a copolymerized substrate. The extracellular peptidases were most active in acidic pH (5.5) and fully inhibited by 1,10-phenanthroline, a zinc-metallopeptidase inhibitor. Other metallo-, cysteine, serine and aspartic proteolytic inhibitors did not significantly alter these activities. To confirm that these enzymes belong to the metallo-type peptidases, the apoenzymes were obtained by dialysis against chelating agents, and supplementation with different cations, especially Cu(2+) and Zn(2+), restored their activities. Except for gelatin, both metallopeptidases hydrolyzed various co-polymerized substrates, including human serum albumin, casein, hemoglobin and IgG. Additionally, the metallopeptidases were able to cleave different soluble proteinaceous substrates such as extracellular matrix components and sialylated proteins. All these hydrolyses were inhibited by 1,10-phenanthroline. Interestingly, Scedosporium apiospermum (the anamorph of P. boydii) produced a distinct extracellular peptidase profile. Collectively, our results demonstrated for the first time the expression of acidic extracellular metallopeptidases in P. boydii capable of degrading several proteinaceous compounds that could help the fungus to escape from natural human barriers and defenses.


Subject(s)
Fungal Proteins/metabolism , Metalloproteases/metabolism , Peptides/metabolism , Proteins/metabolism , Pseudallescheria/metabolism , Caseins/metabolism , Fungal Proteins/antagonists & inhibitors , Fungal Proteins/biosynthesis , Fungal Proteins/chemistry , Hemoglobins/metabolism , Humans , Immunoglobulin G/metabolism , Metalloproteases/antagonists & inhibitors , Metalloproteases/biosynthesis , Metalloproteases/chemistry , Molecular Weight , Mycetoma/metabolism , Mycetoma/microbiology , Peptide Biosynthesis , Peptides/antagonists & inhibitors , Peptides/chemistry , Phenanthrolines/pharmacology , Scedosporium/metabolism , Serum Albumin/metabolism
20.
Exp Parasitol ; 112(4): 253-62, 2006 Apr.
Article in English | MEDLINE | ID: mdl-16442100

ABSTRACT

Trypanosoma rangeli is a parasite of a numerous wild and domestic animals, presenting wide geographical distribution and high immunological cross-reactivity with Trypanosoma cruzi, which may lead to misdiagnosis. T. rangeli has a complex life cycle, involving distinct morphological and functional forms in the vector. Here, we characterized the cell surface polypeptides and the phosphatase activities in short and long epimastigotes forms of T. rangeli, using intact living parasites. The surface protein profile revealed by the incubation of parasites with biotin showed a preferential expression of the 97, 70, 50, 45, 25-22, and 15 kDa biotinylated polypeptides in the long forms, in contrast to the 55 and 28 kDa biotinylated polypeptides synthesized by the short epimastigotes. Additionally, flow cytometry analysis showed that the short forms had relatively lower biotin surface binding than long ones. The involvement of phosphatases with the trypanosomatid differentiation has been proposed. In this sense, T. rangeli living parasites were able to hydrolyze the artificial substrate p-nitrophenylphosphate at a rate of 25.57+/-2.03 and 10.09+/-0.93 nmol p-NPP x h(-1) x 10(7) cells for the short and long epimastigotes, respectively. These phosphatase activities were linear with time for at least 60 min and the optimum pH lies in the acid range. Classical inhibitors of acid phosphatases, such as ammonium molybdate, sodium fluoride, and zinc chloride, showed a significant decrease in these phosphatase activities, with different patterns of inhibition. Additionally, these phosphatase activities presented different kinetic parameters (Km and Vmax) and distinct sensitivities to divalent cations. Both epimastigotes were unable to release phosphatase to the extracellular environment. Cytochemical analysis demonstrated the localization of these enzymes on the parasite surfaces (cell body and flagellum) and in intracellular vacuoles, resembling acidocalcisomes.


Subject(s)
Membrane Proteins/biosynthesis , Peptides/metabolism , Phosphoric Monoester Hydrolases/metabolism , Trypanosoma/metabolism , Animals , Blotting, Western , Cell Communication/physiology , Flow Cytometry , Membrane Proteins/chemistry , Peptides/chemistry , Substrate Specificity , Trypanosoma/classification , Trypanosoma/cytology , Trypanosoma/enzymology
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