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1.
Front Cell Infect Microbiol ; 12: 941888, 2022.
Article in English | MEDLINE | ID: mdl-35992159

ABSTRACT

Leishmania RNA virus 1 (LRV1) is a double-stranded RNA virus found in some strains of the human protozoan parasite Leishmania, the causative agent of leishmaniasis, a neglected tropical disease. Interestingly, the presence of LRV1 inside Leishmania constitutes an important virulence factor that worsens the leishmaniasis outcome in a type I interferon (IFN)-dependent manner and contributes to treatment failure. Understanding how macrophages respond toward Leishmania alone or in combination with LRV1 as well as the role that type I IFNs may play during infection is fundamental to oversee new therapeutic strategies. To dissect the macrophage response toward infection, RNA sequencing was performed on murine wild-type and Ifnar-deficient bone marrow-derived macrophages infected with Leishmania guyanensis (Lgy) devoid or not of LRV1. Additionally, macrophages were treated with poly I:C (mimetic virus) or with type I IFNs. By implementing a weighted gene correlation network analysis, the groups of genes (modules) with similar expression patterns, for example, functionally related, coregulated, or the members of the same functional pathway, were identified. These modules followed patterns dependent on Leishmania, LRV1, or Leishmania exacerbated by the presence of LRV1. Not only the visualization of how individual genes were embedded to form modules but also how different modules were related to each other were observed. Thus, in the context of the observed hyperinflammatory phenotype associated to the presence of LRV1, it was noted that the biomarkers tumor-necrosis factor α (TNF-α) and the interleukin 6 (IL-6) belonged to different modules and that their regulating specific Src-family kinases were segregated oppositely. In addition, this network approach revealed the strong and sustained effect of LRV1 on the macrophage response and genes that had an early, late, or sustained impact during infection, uncovering the dynamics of the IFN response. Overall, this study contributed to shed light and dissect the intricate macrophage response toward infection by the Leishmania-LRV1 duo and revealed the crosstalk between modules made of coregulated genes and provided a new resource that can be further explored to study the impact of Leishmania on the macrophage response.


Subject(s)
Interferon Type I , Leishmania , Leishmaniasis , Leishmaniavirus , Macrophages , Animals , Humans , Interferon Type I/immunology , Leishmania/virology , Leishmaniasis/immunology , Leishmaniasis/parasitology , Leishmaniasis/virology , Macrophages/immunology , Macrophages/parasitology , Mice
2.
PLoS Negl Trop Dis ; 16(1): e0010162, 2022 01.
Article in English | MEDLINE | ID: mdl-35089930

ABSTRACT

American Tegumentary Leishmaniasis (ATL) is an endemic and neglected disease of South America. Here, mucosal leishmaniasis (ML) disproportionately affects up to 20% of subjects with current or previous localised cutaneous leishmaniasis (LCL). Preclinical and clinical reports have implicated the Leishmania RNA virus-1 (LRV1) as a possible determinant of progression to ML and other severe manifestations such as extensive cutaneous and mucosal disease and treatment failure and relapse. However, these associations were not consistently found in other observational studies and are exclusively based on cross-sectional designs. In the present study, 56 subjects with confirmed ATL were assessed and followed out for 24-months post-treatment. Lesion biopsy specimens were processed for molecular detection and quantification of Leishmania parasites, species identification, and LRV1 detection. Among individuals presenting LRV1 positive lesions, 40% harboured metastatic phenotypes; comparatively 58.1% of patients with LRV1 negative lesions harboured metastatic phenotypes (p = 0.299). We found treatment failure (p = 0.575) and frequency of severe metastatic phenotypes (p = 0.667) to be similarly independent of the LRV1. Parasite loads did not differ according to the LRV1 status (p = 0.330), nor did Leishmanin skin induration size (p = 0.907) or histopathologic patterns (p = 0.780). This study did not find clinical, parasitological, or immunological evidence supporting the hypothesis that LRV1 is a significant determinant of the pathobiology of ATL.


Subject(s)
Leishmania/pathogenicity , Leishmania/virology , Leishmaniasis, Cutaneous/parasitology , Leishmaniavirus/isolation & purification , Adult , Cohort Studies , Humans , Leishmania/classification , Leishmaniasis, Cutaneous/pathology , Leishmaniasis, Mucocutaneous/parasitology , Leishmaniasis, Mucocutaneous/pathology , Leishmaniavirus/genetics , Male , Middle Aged , Phenotype , Prospective Studies , Treatment Failure
3.
Viruses ; 13(11)2021 11 19.
Article in English | MEDLINE | ID: mdl-34835111

ABSTRACT

Leishmania spp. are important pathogens causing a vector-borne disease with a broad range of clinical manifestations from self-healing ulcers to the life-threatening visceral forms. Presence of Leishmania RNA virus (LRV) confers survival advantage to these parasites by suppressing anti-leishmanial immunity in the vertebrate host. The two viral species, LRV1 and LRV2 infect species of the subgenera Viannia and Leishmania, respectively. In this work we investigated co-phylogenetic patterns of leishmaniae and their viruses on a small scale (LRV2 in L. major) and demonstrated their predominant coevolution, occasionally broken by intraspecific host switches. Our analysis of the two viral genes, encoding the capsid and RNA-dependent RNA polymerase (RDRP), revealed them to be under the pressure of purifying selection, which was considerably stronger for the former gene across the whole tree. The selective pressure also differs between the LRV clades and correlates with the frequency of interspecific host switches. In addition, using experimental (capsid) and predicted (RDRP) models we demonstrated that the evolutionary variability across the structure is strikingly different in these two viral proteins.


Subject(s)
Capsid Proteins/genetics , Leishmania/virology , Leishmaniasis/virology , RNA Viruses/genetics , RNA, Viral/analysis , RNA-Dependent RNA Polymerase/genetics , Animals , Humans , Viral Proteins/genetics
4.
Microb Cell Fact ; 20(1): 186, 2021 Sep 24.
Article in English | MEDLINE | ID: mdl-34560881

ABSTRACT

BACKGROUND: Noroviruses are a major cause of epidemic and sporadic acute non-bacterial gastroenteritis worldwide. Unfortunately, the development of an effective norovirus vaccine has proven difficult and no prophylactic vaccine is currently available. Further research on norovirus vaccine development should be considered an absolute priority and novel vaccine candidates are needed. One of the recent approaches in safe vaccine development is the use of virus-like particles (VLPs). VLP-based vaccines show great immunogenic potential as they mimic the morphology and structure of viral particles without the presence of the virus genome. RESULTS: This study is the first report showing successful production of norovirus VLPs in the protozoan Leishmania tarentolae (L. tarentolae) expression system. Protozoan derived vaccine candidate is highly immunogenic and able to not only induce a strong immune response (antibody titer reached 104) but also stimulate the production of neutralizing antibodies confirmed by receptor blocking assay. Antibody titers able to reduce VLP binding to the receptor by > 50% (BT50) were observed for 1:5-1:320 serum dilutions. CONCLUSIONS: Norovirus VLPs produced in L. tarentolae could be relevant for the development of the norovirus vaccine.


Subject(s)
Antibodies, Neutralizing/blood , Leishmania/genetics , Leishmania/virology , Norovirus/immunology , Vaccines, Virus-Like Particle/administration & dosage , Vaccines, Virus-Like Particle/immunology , Viral Vaccines/immunology , Animals , Immunization , Immunoglobulin G/blood , Leishmania/immunology , Male , Mice , Mice, Inbred BALB C , Norovirus/genetics , Vaccine Development , Viral Vaccines/administration & dosage , Viral Vaccines/genetics
5.
Am J Trop Med Hyg ; 104(1): 233-239, 2021 01.
Article in English | MEDLINE | ID: mdl-33146111

ABSTRACT

Leishmania RNA virus (LRV) is a double-stranded RNA virus belonging to the Totiviridae family detected as cytoplasmic inclusions in some strains of the human parasite Leishmania spp. Experimental evidence supports the hypothesis that human coinfection with Leishmania spp.-LRV triggers an exacerbated immune response in the host that can be responsible for the observed complicated outcomes in cutaneous leishmaniasis (CL), such as mucosal leishmaniasis (ML) and treatment failure of CL. However, the reported frequencies of LRV associated with complicated outcomes in patient's series are highly variable, diminishing the relevance on the virus presence in the pathogenesis of the disease. To assess whether or not the inconsistent information about the frequency of LRV associated with CL complicated outcomes could be related to the virus detection approach, the present study evaluated the LRV presence in clinical samples using a diagnostic algorithm according to the type of the sample. In 36 samples with diagnosis of complicated forms of CL (15 of ML and 21 of CL antimony treatment failure) and six samples with non-Leishmania spp. infection, the LRV presence was assessed by RT-PCR, RT-qPCR, and nested RT-PCR. Viral load was estimated in parasite clinical isolates. By combining the methods, LRV1 presence was confirmed in 45% (9/20) of isolates and 37.5% (6/16) of the incisional biopsies. Remarkably, in some cases (4/8), LRV1 was undetectable in the isolates but present in their respective biopsies, and less frequently, the opposite was observed (1/8), suggesting the possibility of loss of parasites harboring LRV1 during the in vitro growth.


Subject(s)
Leishmania/virology , Leishmaniasis, Cutaneous/parasitology , Leishmaniasis, Cutaneous/virology , Leishmaniavirus/genetics , RNA, Viral/isolation & purification , Humans , Leishmania/classification , Leishmaniavirus/isolation & purification , Polymerase Chain Reaction/methods , Viral Load
6.
Int J Infect Dis ; 101: 6-13, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32947050

ABSTRACT

OBJECTIVE: Leishmania RNA virus (LRV) is a double-stranded RNA (dsRNA) virus that circulates within many species of the Leishmania parasite. In this study, we aimed to investigate the presence of LRV2 circulating in Leishmania isolates in an old focus of ZCL located in northeastern of Iran. METHODS: Leishmania isolates were collected from 85 patients that confirmed to have cutaneous leishmaniasis (CL) based on parasitological examination. To identify the Leishmania isolates, species-specific primer sets were applied for molecular identification. The presence of LRV2 was performed by RdRp-semi nested-PCR. The genetic diversity were calculated using MEGA and DnaSP. To assess haplotype diversity, 31 LRV2 strains in different regions were surveyed using analysis a 292-bp section of the RdRp sequences. RESULTS: Out of 85 patients, 83 (97.6 %) were diagnosed with L. major and 2 (2.4 %) with L. tropica. LRV2 virus was detected in 59 (69.4%) of the CL cases. For the first time, LRV2 was reported in one L. tropica strain in Iran. The current LRV2 sequences indicated the highest similarities to an Old World LRV2. Moreover, 10 unique haplotypes were identified based on the analyzed sequences of the RdRp gene. CONCLUSIONS: Our results indicated the highest occurrence of Leishmania/LRV2 co-circulation in this known ZCL focus from northeastern Iran. Phylogenetic analyses of LRV2 sequences confirmed that these isolates belong to the order of LRV2 from the Old World. This study offered an insight into LRV2 haplotype that the informative issue can be used for genetic research of LRV2 in other regions.


Subject(s)
Leishmania/virology , Leishmaniasis, Cutaneous/virology , RNA Viruses/isolation & purification , Viral Zoonoses/virology , Adult , Animals , Child , Haplotypes , Humans , Iran , Leishmania/isolation & purification , Leishmaniasis, Cutaneous/parasitology , Male , Phylogeny , Polymerase Chain Reaction , RNA Viruses/genetics , RNA, Viral/isolation & purification , Species Specificity
7.
Viruses ; 12(2)2020 02 02.
Article in English | MEDLINE | ID: mdl-32024293

ABSTRACT

In this work, we describe the first Leishmania-infecting leishbunyavirus-the first virus other than Leishmania RNA virus (LRV) found in trypanosomatid parasites. Its host is Leishmaniamartiniquensis, a human pathogen causing infections with a wide range of manifestations from asymptomatic to severe visceral disease. This virus (LmarLBV1) possesses many characteristic features of leishbunyaviruses, such as tripartite organization of its RNA genome, with ORFs encoding RNA-dependent RNA polymerase, surface glycoprotein, and nucleoprotein on L, M, and S segments, respectively. Our phylogenetic analyses suggest that LmarLBV1 originated from leishbunyaviruses of monoxenous trypanosomatids and, probably, is a result of genomic re-assortment. The LmarLBV1 facilitates parasites' infectivity in vitro in primary murine macrophages model. The discovery of a virus in L.martiniquensis poses the question of whether it influences pathogenicity of this parasite in vivo, similarly to the LRV in other Leishmania species.


Subject(s)
Genome, Viral , Leishmania/virology , Phylogeny , RNA Viruses/genetics , Animals , High-Throughput Nucleotide Sequencing , Leishmania/pathogenicity , Macrophages/parasitology , Mice , Open Reading Frames , RNA Viruses/classification , RNA-Dependent RNA Polymerase , Reassortant Viruses
8.
Nat Commun ; 10(1): 5273, 2019 11 21.
Article in English | MEDLINE | ID: mdl-31754185

ABSTRACT

Leishmania RNA virus (LRV) is an important virulence factor associated with the development of mucocutaneous Leishmaniasis, a severe form of the disease. LRV-mediated disease exacerbation relies on TLR3 activation, but downstream mechanisms remain largely unexplored. Here, we combine human and mouse data to demonstrate that LRV triggers TLR3 and TRIF to induce type I IFN production, which induces autophagy. This process results in ATG5-mediated degradation of NLRP3 and ASC, thereby limiting NLRP3 inflammasome activation in macrophages. Consistent with the known restricting role of NLRP3 for Leishmania replication, the signaling pathway triggered by LRV results in increased parasite survival and disease progression. In support of this data, we find that lesions in patients infected with LRV+ Leishmania are associated with reduced inflammasome activation and the development of mucocutaneous disease. Our findings reveal the mechanisms triggered by LRV that contribute to the development of the debilitating mucocutaneous form of Leishmaniasis.


Subject(s)
Immunity, Innate/immunology , Inflammasomes/immunology , Leishmania/immunology , Leishmaniasis, Mucocutaneous/immunology , NLR Family, Pyrin Domain-Containing 3 Protein/immunology , RNA Viruses/immunology , Toll-Like Receptor 3/immunology , Animals , Autophagy/immunology , Humans , Interleukin-1beta/immunology , Interleukin-1beta/metabolism , Leishmania/physiology , Leishmania/virology , Leishmaniasis, Mucocutaneous/parasitology , Leishmaniasis, Mucocutaneous/virology , Macrophages/immunology , Mice , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , RNA Viruses/physiology , Signal Transduction/immunology , Toll-Like Receptor 3/metabolism
9.
Transbound Emerg Dis ; 66(6): 2244-2251, 2019 Nov.
Article in English | MEDLINE | ID: mdl-31376334

ABSTRACT

Leishmaniasis is one of the most neglected tropical diseases caused by protozoan parasites belonging to the genus Leishmania. There is much evidence regarding prevalence of Leishmania RNAvirus (LRV) causing Old World leishmaniasis (OWL) and New World leishmaniasis (NWL); however, a combined evidence-based knowledge on this topic is not still available. The purpose of this systematic review and meta-analysis was to address the global status of synchronizing LRV in Leishmania in the available literature. The data were systematically collected from the English electronic databases up to May 2018. Then, the studies were screened based on the inclusion and exclusion criteria. The random-effect model was used by forest plot with 95% confidence interval (CI). Overall, 877 samples from 17 articles were included in this study. Given species of Leishmania, the highest prevalence of LRV belonged to Leishmania (L.) Viannia (V.) guyanensis and L. V. braziliensis. Additionally, the virus was detected also in L. V. amazonensis, L. V. panamanensis, L. V. lainsoni, L. aethiopica, L. major and L. infantum. By random-effect model, the global prevalence of LRV was estimated to be 26.2% (95% CI: 14.4% - 40.1%). The high prevalence of LRV among causative agents of NWLisolated from the metastatic clinical forms suggests potential association of LRV with metastatic clinical forms in New World endemic regions. A comprehensive investigation on experimental and clinical aspects of LRV is needed to fully appraise the role of these viruses in pathogenicity of Leishmania parasites and their drug resistance.


Subject(s)
Leishmania/virology , Leishmaniavirus/isolation & purification , Animals , Humans
10.
Curr Opin Infect Dis ; 32(5): 419-425, 2019 10.
Article in English | MEDLINE | ID: mdl-31335437

ABSTRACT

PURPOSE OF REVIEW: Despite modern advances in molecular diagnostic tools and a better understanding of its complex pathophysiology, cutaneous leishmaniasis, a neglected tropical disease, remains a major global health problem. Laboratory methods to inform prognosis and treatment are not widely available, the therapeutic options are limited and have significant adverse effects, and emergence of drug resistance is a further complication. New advances in the understanding of the role of Leishmania RNA virus (LRV) as a prognostic factor, speciation methods and antimicrobial resistance testing and their limitations will be discussed. RECENT FINDINGS: LRV, an intracytoplasmic endosymbiont found mostly in Leishmania spp. associated with more severe disease, appears to play a role in modulating the host immune response and has been associated with treatment failure in some Viannia subgenus species. Proper speciation is an important guide to management. However, recent findings have demonstrated significant heterogeneity of results related to differences in genotyping methods. SUMMARY: Recognition of the role of LRV in immune modulation and response to treatment along with more accessible tools for its detection to guide management at the bedside should allow a better individualized approach. Improving accessibility and standardization of speciation methods and antimicrobial susceptibility testing should be major goals to improve cutaneous leishmaniasis management in the 21st century.


Subject(s)
Drug Resistance, Microbial , Leishmania/drug effects , Leishmania/virology , Leishmaniasis, Cutaneous/epidemiology , Neglected Diseases/epidemiology , RNA Viruses/isolation & purification , Antiprotozoal Agents/therapeutic use , Diagnostic Tests, Routine/methods , Disease Management , Genotype , Global Health , Humans , Leishmania/classification , Leishmania/genetics , Leishmaniasis, Cutaneous/diagnosis , Leishmaniasis, Cutaneous/drug therapy , Leishmaniasis, Cutaneous/parasitology , Prognosis
11.
Rev Soc Bras Med Trop ; 52: e20180323, 2019 Apr 11.
Article in English | MEDLINE | ID: mdl-30994803

ABSTRACT

We report the case of a 32-year-old man from Rio de Janeiro, who was infected in the Amazon region of Brazil by Leishmania (Viannia) naiffi. Generally, patients with L. naiffi cutaneous leishmaniasis exhibit a good therapeutic response to either pentavalent antimonials or pentamidine. However, after pentamidine treatment, this patient's infection evolved to therapeutic failure. To understand this clinical outcome, we investigated the presence of the Leishmania RNA virus (LRV) in parasites isolated from the cutaneous lesion; herein, we discuss the possible association between a poor response to pentamidine therapy and the presence of the LRV.


Subject(s)
Leishmania/virology , Leishmaniasis, Cutaneous/drug therapy , Pentamidine/therapeutic use , RNA Viruses/genetics , Trypanocidal Agents/therapeutic use , Adult , Humans , Male , Pentamidine/adverse effects , Polymerase Chain Reaction , Treatment Failure , Trypanocidal Agents/adverse effects
12.
Nat Microbiol ; 4(4): 714-723, 2019 04.
Article in English | MEDLINE | ID: mdl-30692670

ABSTRACT

Leishmania are ancient eukaryotes that have retained the exosome pathway through evolution. Leishmania RNA virus 1 (LRV1)-infected Leishmania species are associated with a particularly aggressive mucocutaneous disease triggered in response to the double-stranded RNA (dsRNA) virus. However, it is unclear how LRV1 is exposed to the mammalian host cells. In higher eukaryotes, some viruses are known to utilize the host exosome pathway for their formation and cell-to-cell spread. As a result, exosomes derived from infected cells contain viral material or particles. Herein, we investigated whether LRV1 exploits the Leishmania exosome pathway to reach the extracellular environment. Biochemical and electron microscopy analyses of exosomes derived from LRV1-infected Leishmania revealed that most dsRNA LRV1 co-fractionated with exosomes, and that a portion of viral particles was surrounded by these vesicles. Transfer assays of LRV1-containing exosome preparations showed that a significant amount of parasites were rapidly and transiently infected by LRV1. Remarkably, these freshly infected parasites generated more severe lesions in mice than non-infected ones. Moreover, mice co-infected with parasites and LRV1-containing exosomes also developed a more severe disease. Overall, this work provides evidence that Leishmania exosomes function as viral envelopes, thereby facilitating LRV1 transmission and increasing infectivity in the mammalian host.


Subject(s)
Exosomes/virology , Leishmania/physiology , Leishmania/virology , Leishmaniasis/parasitology , Leishmaniavirus/physiology , Animals , Female , Humans , Leishmania/genetics , Leishmania/pathogenicity , Mice , Mice, Inbred BALB C , Virulence
13.
Rev. Soc. Bras. Med. Trop ; 52: e20180323, 2019. graf
Article in English | LILACS | ID: biblio-1003132

ABSTRACT

Abstract We report the case of a 32-year-old man from Rio de Janeiro, who was infected in the Amazon region of Brazil by Leishmania (Viannia) naiffi. Generally, patients with L. naiffi cutaneous leishmaniasis exhibit a good therapeutic response to either pentavalent antimonials or pentamidine. However, after pentamidine treatment, this patient's infection evolved to therapeutic failure. To understand this clinical outcome, we investigated the presence of the Leishmania RNA virus (LRV) in parasites isolated from the cutaneous lesion; herein, we discuss the possible association between a poor response to pentamidine therapy and the presence of the LRV.


Subject(s)
Humans , Male , Adult , Pentamidine/therapeutic use , RNA Viruses/genetics , Trypanocidal Agents/therapeutic use , Leishmaniasis, Cutaneous/drug therapy , Leishmania/virology , Pentamidine/adverse effects , Trypanocidal Agents/adverse effects , Polymerase Chain Reaction , Treatment Failure
14.
PLoS One ; 13(6): e0198727, 2018.
Article in English | MEDLINE | ID: mdl-29912912

ABSTRACT

Cutaneous leishmaniasis is a neglected parasitic disease that manifests in infected individuals under different phenotypes, with a range of factors contributing to its broad clinical spectrum. One factor, Leishmania RNA Virus 1 (LRV1), has been described as an endosymbiont present in different species of Leishmania. LRV1 significantly worsens the lesion, exacerbating the immune response in both experimentally infected animals and infected individuals. Little is known about the composition and genetic diversity of these viruses. Here, we investigated the relationship between the genetic composition of LRV1 detected in strains of Leishmania (Viannia) braziliensis and L. (V.) guyanensis and the interaction between the endosymbiont and the parasitic species, analyzing an approximately 850 base pair region of the viral genome. We also included one LRV1 sequence detected in L. (V.) shawi, representing the first report of LRV1 in a species other than L. braziliensis and L. guyanensis. The results illustrate the genetic diversity of the LRV1 strains analyzed here, with smaller divergences detected among viral sequences from the same parasite species. Phylogenetic analyses showed that the LRV1 sequences are grouped according to the parasite species and possibly according to the population of the parasite in which the virus was detected, corroborating the hypothesis of joint evolution of the viruses with the speciation of Leishmania parasites.


Subject(s)
Leishmania/virology , Leishmaniavirus/genetics , Biological Coevolution/genetics , Genetic Variation/genetics , Genome, Viral/genetics , Leishmania braziliensis/virology , Leishmania guyanensis/virology , Leishmaniasis/parasitology , Phylogeny , Sequence Analysis, DNA , South America , Species Specificity
15.
Parasitology ; 145(10): 1265-1273, 2018 09.
Article in English | MEDLINE | ID: mdl-29223169

ABSTRACT

One of the Leishmania species known to be non-infective to humans is Leishmania (Mundinia) enriettii whose vertebrate host is the guinea pig Cavia porcellus. It is a good model for cutaneous leishmaniasis, chemotherapeutic and molecular studies. In the last years, an increased interest has emerged concerning the L. (Mundinia) subgenus after the finding of Leishmania (M.) macropodum in Australia and with the description of other new/putative species such as L. (M.) martiniquensis and 'L. (M.) siamensis'. This review focused on histopathology, glycoconjugates and innate immunity. The presence of Leishmania RNA virus and shedding of extracellular vesicles by the parasite were also evaluated.


Subject(s)
Extracellular Vesicles/physiology , Host-Parasite Interactions , Leishmania/pathogenicity , Leishmaniasis, Cutaneous/pathology , Animals , Australia , Disease Models, Animal , Guinea Pigs/parasitology , Immunity, Innate , Leishmania/classification , Leishmania/virology , Leishmaniasis, Cutaneous/immunology , RNA Viruses
16.
PLoS Negl Trop Dis ; 11(7): e0005764, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28715422

ABSTRACT

INTRODUCTION: Leishmania RNA virus type 1 (LRV1) is an endosymbiont of some Leishmania (Vianna) species in South America. Presence of LRV1 in parasites exacerbates disease severity in animal models and humans, related to a disproportioned innate immune response, and is correlated with drug treatment failures in humans. Although the virus was identified decades ago, its genomic diversity has been overlooked until now. METHODOLOGY/PRINCIPLES FINDINGS: We subjected LRV1 strains from 19 L. (V.) guyanensis and one L. (V.) braziliensis isolates obtained from cutaneous leishmaniasis samples identified throughout French Guiana with next-generation sequencing and de novo sequence assembly. We generated and analyzed 24 unique LRV1 sequences over their full-length coding regions. Multiple alignment of these new sequences revealed variability (0.5%-23.5%) across the entire sequence except for highly conserved motifs within the 5' untranslated region. Phylogenetic analyses showed that viral genomes of L. (V.) guyanensis grouped into five distinct clusters. They further showed a species-dependent clustering between viral genomes of L. (V.) guyanensis and L. (V.) braziliensis, confirming a long-term co-evolutionary history. Noteworthy, we identified cases of multiple LRV1 infections in three of the 20 Leishmania isolates. CONCLUSIONS/SIGNIFICANCE: Here, we present the first-ever estimate of LRV1 genomic diversity that exists in Leishmania (V.) guyanensis parasites. Genetic characterization and phylogenetic analyses of these viruses has shed light on their evolutionary relationships. To our knowledge, this study is also the first to report cases of multiple LRV1 infections in some parasites. Finally, this work has made it possible to develop molecular tools for adequate identification and genotyping of LRV1 strains for diagnostic purposes. Given the suspected worsening role of LRV1 infection in the pathogenesis of human leishmaniasis, these data have a major impact from a clinical viewpoint and for the management of Leishmania-infected patients.


Subject(s)
Genetic Variation , Leishmania/virology , Leishmaniavirus/classification , Leishmaniavirus/isolation & purification , Phylogeny , Adult , Aged , Cluster Analysis , Female , French Guiana , Genome, Viral , Humans , Leishmania/isolation & purification , Leishmaniasis/parasitology , Leishmaniavirus/genetics , Male , Middle Aged , RNA, Viral/genetics , Sequence Alignment , Sequence Analysis, DNA , Young Adult
17.
Trends Parasitol ; 33(2): 76-78, 2017 02.
Article in English | MEDLINE | ID: mdl-27956061

ABSTRACT

The recent paper by Brettmann et al. provides insight as to how an RNA virus can persistently coexist in a protozoan with RNAi activity and how these two entities work to maintain balance. The authors were also able to successfully remove the virus and examine the role of the virus in parasitemia and the pathogenesis of leishmaniasis.


Subject(s)
Leishmania/virology , Leishmaniasis/parasitology , Leishmaniasis/virology , Parasitemia/physiopathology , Parasitemia/virology , RNA Interference , RNA Viruses/physiology , Animals , Humans , Leishmania/genetics , Leishmaniasis/genetics , Leishmaniasis/physiopathology , Parasitemia/parasitology
18.
Am J Trop Med Hyg ; 94(1): 102-6, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26598572

ABSTRACT

In South America, the presence of the Leishmania RNA virus type 1 (LRV1) was described in Leishmania guyanensis and Leishmania braziliensis strains. The aim of this study was to determine the prevalence distribution of LRV1 in Leishmania isolates in French Guiana given that, in this French overseas department, most Leishmania infections are due to these parasite species. The presence of the virus was observed in 74% of Leishmania spp. isolates, with a highest presence in the internal areas of the country.


Subject(s)
Leishmania/virology , RNA Viruses/genetics , RNA, Viral/genetics , RNA, Viral/isolation & purification , French Guiana/epidemiology , Humans , Leishmania/classification , Leishmaniasis/epidemiology , Leishmaniasis/parasitology , Reverse Transcriptase Polymerase Chain Reaction
19.
Braz. j. otorhinolaryngol. (Impr.) ; 81(5): 533-540, Sept.-Oct. 2015. tab, graf
Article in English | LILACS | ID: lil-766282

ABSTRACT

ABSTRACT INTRODUCTION: Mucosal leishmaniosis (ML) is a severe clinical form of leishmaniosis. Complex factors related to the parasite and the host are attributed to the development of mucosal lesions. Leishmania RNA virus 1 (LRV1) can disrupt immune response, and may be the main determinant of severity of the disease; it should be investigated. OBJECTIVE: To study the existence of clinical differences between patients with ML with endosymbiosis by LRV1 and. those without it. METHODS: A cross-sectional cohort study with clinical evaluation, polymerase chain reaction (PCR) detection of Leishmania, species classification, and search of LRV1 was performed. Only patients with confirmed diagnosis of ML by positive PCR and with nasal mucosa injuries were included in this analysis. RESULTS: Out of 37 patients, 30 (81.1%) were diagnosed with Leishmania braziliensis, five (13.5%) with Leishmania guyanensis, and two (5.4%) with mixed infection of L. braziliensis and L. guyanensis. LVR1 virus was present in 26 (70.3%) of the cases. CONCLUSION: Correlation between clinical phenotype and presence of LRV1 was not observed, although the frequency of the virus is two-fold higher in mucosal lesions than that found in the literature on skin lesions in the same geographical area.


RESUMO Introdução: A leishmaniose de mucosa (LM) é uma forma clínica grave da leishmaniose. Fatores complexos ligados ao parasita e ao hospedeiro são atribuídos ao desenvolvimento das lesões de mucosa. Leishmania RNA Vírus 1 (LRV1) pode subverter a resposta imune, podendo ser o principal determinante da gravidade da doença e deve ser pesquisado. Objetivo: Estudar a existência de diferenças clínicas entre pacientes portadores de LM com endosimbiose por LRV1 e as que não possuem. Métodos: Foi realizado um estudo de coorte histórica com corte transversal com avaliação clínica, detecção da Leishmania por técnica de PCR, classificação da espécie e pesquisa de LRV1. Foram incluídos na análise da pesquisa somente os pacientes com diagnóstico confirmado de LM com PCR positivo, com lesão de mucosa nasal. Resultados: Dos 37 pacientes, 30 (81,1%) foram diagnosticados com L. braziliensis, 5 (13,5%) com L. guyanensis e 2 (5,4%) com infecção mista de L. braziliensis e L. guyanensis. O vírus LVR1 estava presente em 26 casos (70,3%). Conclusão: A correlação entre o fenótipo clínico e a presença do LRV1 não foi constatada, porém a frequência do vírus é duas vezes maior em lesão de mucosa do que encontrado em trabalho, da mesma região, sobre lesão cutânea.


Subject(s)
Adolescent , Adult , Aged , Child , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Male , Middle Aged , Young Adult , Leishmania/virology , Leishmaniasis, Mucocutaneous/virology , Leishmaniavirus/genetics , Nasal Mucosa/parasitology , RNA Viruses/genetics , Cohort Studies , Cross-Sectional Studies , Leishmania/classification , Leishmaniasis, Mucocutaneous/genetics , Phenotype , Polymerase Chain Reaction , Severity of Illness Index
20.
PLoS Negl Trop Dis ; 9(9): e0004079, 2015.
Article in English | MEDLINE | ID: mdl-26372217

ABSTRACT

Tegumentary Leishmaniasis (TL) is endemic in Latin America, and Brazil contributes approximately 20 thousand cases per year. The pathogenesis of TL, however, is still not fully understood. Clinical manifestations vary from cutaneous leishmaniasis (CL) to more severe outcomes, such as disseminated leishmaniasis (DL), mucosal leishmaniasis (ML) and diffuse cutaneous leishmaniasis (DCL). Many factors have been associated with the severity of the disease and the development of lesions. Recent studies have reported that the presence of Leishmania RNA virus 1 infecting Leishmania (Leishmania RNA virus 1, LRV1) is an important factor associated with the severity of ML in experimental animal models. In the present study, 156 patients who attended Rondonia's Hospital of Tropical Medicine with both leishmaniasis clinical diagnoses (109 CL; 38 ML; 5 CL+ML; 3 DL and 1 DCL) and molecular diagnoses were investigated. The clinical diagnosis were confirmed by PCR by targeting hsp70 and kDNA DNA sequences and the species causing the infection were determined by HSP70 PCR-RFPL. The presence of LVR1 was tested by RT-PCR. Five Leishmania species were detected: 121 (77.6%) samples were positive for Leishmania (Viannia) braziliensis, 18 (11.5%) were positive for Leishmania (V.) guyanensis, 3 (1.8%) for Leishmania (V.) lainsoni, 2 (1.3%) for Leishmania (Leishmania) amazonensis and 2 (1.3%) for Leishmania (V.) shawi. Six (3.9%) samples were positive for Leishmania sp. but the species could not be determined, and 4 (2.6%) samples were suggestive of mixed infection by L. (V.) braziliensis and L. (V.) guyanensis. The virus was detected in L. braziliensis (N = 54), L. guyanensis (N = 5), L. amazonensis (N = 2), L. lainsoni (N = 1) and inconclusive samples (N = 6). Patients presenting with CL+ML, DL and DCL were excluded from further analysis. Association between the presence of the virus and the disease outcome were tested among the remaining 147 patients (CL = 109 and ML = 38). Of them, 71.1% (n = 27) mucosal lesions were positive for LRV1, and 28.9% (n = 11) were negative. In cutaneous lesions, 36.7% (n = 40) were positive and 63.3% (n = 69) were negative for LRV1. The ratio P(ML|LRV1+)/P(ML|LRV1-) was 2.93 (CI95% 1.57...5.46; p<0.001), thus corroborating the hypothesis of the association between LRV1 and the occurrence of mucosal leishmaniasis, as previously described in animal models; it also indicates that LRV1 is not the only factor contributing to the disease outcome.


Subject(s)
Leishmania/pathogenicity , Leishmania/virology , Leishmaniasis, Mucocutaneous/pathology , Leishmaniasis, Mucocutaneous/parasitology , Leishmaniavirus/isolation & purification , Mucous Membrane/pathology , RNA, Viral/isolation & purification , Brazil , Case-Control Studies , Humans , Leishmania/classification , Leishmania/genetics , Leishmaniavirus/genetics , Molecular Sequence Data , RNA, Viral/genetics , Reverse Transcriptase Polymerase Chain Reaction , Sequence Analysis, DNA
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