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1.
The parasite Trichomonas vaginalis is the causative agent of trichomoniasis, a prevalent sexually transmitted infection. Here, we report the cellular analyses of T. vaginalis tetraspanin 6 (TvTSP6). This family of membrane proteins has been implicated in cell adhesion, migration and proliferation in vertebrates. We observed that TvTSP6 expression is upregulated upon contact with vaginal ectocervical cells (VECs) and that parasite strains that are highly adherent to VECs express higher levels of TvTSP6 mRNA relative to poorly adherent strains. TvTSP6 is localized predominantly on the flagella of parasites cultured in the absence of host cells; however, adherence of the parasite to VECs initially results in a redistribution of the protein to intracellular vesicles and the plasma membrane of the main body of the cell. We found that a 16‐amino‐acid C‐terminal intracellular tail of TvTSP6 is necessary and sufficient for flagellar localization and protein redistribution when the parasite is in contact with VECs. Additionally, deletion of the C‐terminal tail reduced parasite migration through Matrigel, a mimic of the extracellular matrix. Together, our data support roles for TvTSP6 in parasite migration in the host and sensory reception during infection.  相似文献   

2.

Background  

AP65 is a prominent adhesin of Trichomonas vaginalis that mediates binding of parasites to host vaginal epithelial cells (VECs). AP65 with no secretion signal sequence, membrane targeting peptide, and anchoring motif was recently found to be secreted.  相似文献   

3.
Trichomonas vaginalis is the most widespread non‐viral pathogen of the human urogenital tract, infecting ~ 3% of the world's population annually. At the onset of infection the protist changes morphology within minutes: the flagellated free‐swimming cell converts into the amoeboid‐adherent stage. The molecular machinery of this process is not well studied, but is thought to involve actin reorganization. We have characterized amoeboid transition, focusing in particular on TvFim1, the only expressed protein of the fimbrin family in Trichomonas. Addition of TvFim1 to actin polymerization assays increases the speed of actin filament assembly and results in bundling of F‐actin in a parallel and anti‐parallel manner. Upon contact with vaginal epithelial cells, the otherwise diffuse localization of actin and TvFim1 changes dramatically. In the amoeboid TvFim1 associates with fibrous actin bundles and concentrates at protrusive structures opposing the trailing ends of the gliding amoeboid form and rapidly redistributes together with actin to form distinct clusters. Live cell imaging demonstrates that Trichomonas amoeboid stages do not just adhere to host tissue, rather they actively migrate across human epithelial cells. They do so in a concerted manner, with an average speed of 20 μm min?1 and often using their flagella and apical tip as the leading edge.  相似文献   

4.

Background  

Trichomonosis, caused by Trichomonas vaginalis, is the number one, nonviral sexually transmitted infection that has adverse consequences for the health of women and children. The interaction of T. vaginalis with vaginal epithelial cells (VECs), a step preparatory to infection, is mediated in part by the prominent surface protein AP65. The bovine trichomonad, Tritrichomonas foetus, adheres poorly to human VECs. Thus, we established a transfection system for heterologous expression of the T. vaginalis AP65 in T. foetus, as an alternative approach to confirm adhesin function for this virulence factor.  相似文献   

5.

Background  

Host parasitism by Trichomonas vaginalis is complex. Adherence to vaginal epithelial cells (VECs) is mediated by surface proteins. We showed before that antisense down-regulation of expression of adhesin AP65 decreased amounts of protein, which lowered levels of T. vaginalis adherence to VECs. We now perform antisense down-regulation of expression of the ap33 gene to evaluate and confirm a role for AP33 in adherence by T. vaginalis. We also used an established transfection system for heterologous expression of AP33 in T. foetus as an additional confirmatory approach.  相似文献   

6.
7.
Trichomonas vaginalis is a common sexually transmitted parasite that colonizes the human urogential tract where it remains extracellular and adheres to epithelial cells. Infections range from asymptomatic to highly inflammatory, depending on the host and the parasite strain. Here, we use a combination of methodologies including cell fractionation, immunofluorescence and electron microscopy, RNA, proteomic and cytokine analyses and cell adherence assays to examine pathogenic properties of T. vaginalis. We have found that T.vaginalis produces and secretes microvesicles with physical and biochemical properties similar to mammalian exosomes. The parasite-derived exosomes are characterized by the presence of RNA and core, conserved exosomal proteins as well as parasite-specific proteins. We demonstrate that T. vaginalis exosomes fuse with and deliver their contents to host cells and modulate host cell immune responses. Moreover, exosomes from highly adherent parasite strains increase the adherence of poorly adherent parasites to vaginal and prostate epithelial cells. In contrast, exosomes from poorly adherent strains had no measurable effect on parasite adherence. Exosomes from parasite strains that preferentially bind prostate cells increased binding of parasites to these cells relative to vaginal cells. In addition to establishing that parasite exosomes act to modulate host∶parasite interactions, these studies are the first to reveal a potential role for exosomes in promoting parasite∶parasite communication and host cell colonization.  相似文献   

8.
SYNOPSIS. In trypsin-dispersed chick liver cell cultures malic dehydrogenase activity is localized in granules distributed thruout the cytoplasm of fibroblasts, epithelial cells, and macrophages. A progressive increase of the enzymic activity in all cell culture elements, except for phagocytes whose external or internal surfaces remain in direct contact with the parasites, accompanies infection of the cultures with a relatively pathogenic strain of Trichomonas vaginalis. In such phagocytes most staining for malic dehydrogenase is lost. Epithelial cells and parasite-free macrophages in experimental cultures also have a diffuse cytoplasmic reaction. No lipase activity is present in fibroblasts, but epithelial cells and macrophages in chick liver cell cultures contain numerous reactive granules. A strong diffuse cytoplasmic reaction is found in the epithelial cells and a weaker one in the control phagocytes. In cultures infected with T. vaginalis the enzyme is lost progressively from the epithelium and from those macrophages which have engulfed the parasites or whose external surfaces are invested with the flagellates; however, no significant changes in lipase activity can be found in parasite-free experimental phagocytes. In all cell types found in chick liver cultures, the reaction for nonspecific esterase is localized in cytoplasmic inclusions of varying size, some of which tend to accumulate along the cell membranes and around the nuclei. In addition, a weak diffuse cytoplasmic reaction is seen in the epithelial cells. Most cells in cultures infected with T. vaginalis have a significant increase in esterase activity, the exception being the macrophages which contain parasites within their cytoplasm or those with flagellates applied closely to their external surfaces. Only a few specifically stained granules are retained by such phagocytes. Monoamine oxidase activity is limited to fine granules dispersed in the cytoplasm of fibroblasts, epithelial cells, and macrophages of control cultures. Infection of chick liver cultures with T. vaginalis results in lowered enzyme activity in non-phagocytic cells as well as in macrophages with engulfed flagellates and in those whose external surface are invested with the parasites. The number of reactive inclusions appears to increase in trichomonad-free phagocytes of experimental cultures.  相似文献   

9.
SYNOPSIS. By means of the ninhydrin-Schiff method for proteins a diffuse reaction as well as one localized in granular inclusions can be shown in the cytoplasm of fibroblasts, epithelial cells, and macrophages in trypsin-dispersed chick liver cell cultures. Nuclei and nucleoli also take the specific stain. A progressive loss of cytoplasmic and nuclear staining occurs in the fibroblasts in cultures infected with a relatively pathogenic strain of T. vaginalis. A loss occurs in epithelial cells in advanced stages of degeneration, but in less damaged cells, while the diffuse reaction disappears, the number and staining intensity of the cytoplasmic inclusions remain unchanged or possibly may increase somewhat. The intensity of the diffuse reaction and the number and size of the characteristic inclusions increase in the active, parasite-free, experimental macrophages, but phagocytes with trichomonads closely applied to their external surfaces and those containing the flagellates within their cytoplasm typically retain only a few weak-staining inclusions. Similar distribution of alkaline and acid phosphatases occurs in preparations treated according to Gomori's and Burstone's methods, except that no nuclear staining is obtained with the latter. Activity of both enzymes is localized primarily in inclusions which are dispersed thruout the cytoplasm of fibroblasts and epithelial cells and tend to accumulate along the cell membranes and around the nuclei. In the course of infection with T. vaginalis there is a progressive loss of alkaline phosphatase from both cell types; however, the acid phosphatase activity increases. In the control macrophages both enzymes are localized in mostly rather large, rounded cytoplasmic inclusions. The number of such inclusions increases in the parasite-free experimental macrophages, but only a few weak-staining granules remainin phagocytes with engulfed trichomonads and in those whose external surfaces are in direct contact with the parasites. The loss of the inclusions is less apparent in macrophages containing degenerated flagellates than in the ones with healthy trichomonads, but regardless of the condition of the parasites, the highest enzymatic activity is found around them. ATPase and 5′-nucleotidase are localized in small granules dispersed thruout the cytoplasm of fibroblasts and epithelial cells. The granules tend to accumulate along the periphery of the cells and around the nuclei. A diffuse cytoplasmic reaction is present in preparations processed for 5′-nucleotidase. Nuclei and nucleoli give positive reactions for both enzymes. In the course of infection with trichomonads, activity of the 2 enzymes declines in both culture cell types. Control macrophages have diffuse cytoplasmic reaction for ATPase and 5′-nucleotidase and these enzymes are localized also in rounded cytoplasmic inclusions. Activity of both enzymes increases in the parasite-free experimental phagocytes, but little if any diffuse staining and only a few characteristic inclusions are left in macrophages with engulfed healthy trichomonads and in those whose external surfaces are invested with the flagellates. The ninhydrin-Schiff-positive inclusions found in the macrophages appear to be the same as some of those which have acid phosphatase activity and may well be identical with the glycolipoprotein bodies noted by us previously. On the grounds of their chemical constitution and behavior it seems likely that the inclusions are lysosomes.  相似文献   

10.
Trichomonas vaginalis is a flagellate protozoan parasite and commonly infected the lower genital tract in women and men. Iron is a known nutrient for growth of various pathogens, and also reported to be involved in establishment of trichomoniasis. However, the exact mechanism was not clarified. In this study, the author investigated whether the 120 kDa protein of T. vaginalis may be involved in pathogenicity of trichomonads. Antibodies against 120 kDa protein of T. vaginalis, which was identified as pyruvate:ferredoxin oxidoreductase (PFOR) by peptide analysis of MALDI-TOF-MS, were prepared in rabbits. Pretreatment of T. vaginalis with anti-120 kDa Ab decreased the proliferation and adherence to vaginal epithelial cells (MS74) of T. vaginalis. Subcutaneous tissue abscess in anti-120 kDa Ab-treated T. vaginalis-injected mice was smaller in size than that of untreated T. vaginalis-infected mice. Collectively, the 120 kDa protein expressed by iron may be involved in proliferation, adhesion to host cells, and abscess formation, thereby may influence on the pathogenicity of T. vaginalis.  相似文献   

11.
Trichomonas vaginalis and Tritrichomonas foetus are parasitic protists of the human and bovine urogenital tracts, respectively. Several studies have described the cytotoxic effects of trichomonads on urogenital tract epithelial cells. However, little is known about the host cell response against trichomonads. The aim of this study was to determine whether T. foetus and T. vaginalis stimulated the release of the cytokine interleukin (IL)-10 from cultured bovine epithelial cells. To characterise the inflammatory response induced by these parasites, primary cultures of bovine oviduct epithelial cells were exposed to either T. vaginalis or T. foetus. Within 12 h after parasite challenge, supernatants were collected and cytokine production was analysed. Large amounts of IL-10 were detected in the supernatants of cultures that had been stimulated with T. foetus. Interestingly, T. vaginalis induced only a small increase in the release of IL-10 upon exposure to the same bovine cells. Thus, the inflammatory response of the host cell is species-specific. Only T. foetus and not T. vaginalis induced the release of IL-10 by bovine oviduct epithelial cells.  相似文献   

12.
Trichomonas vaginalis and Tritrichomonas foetus are human and bovine parasites, respectively, that provoke the sexually transmitted disease trichomoniasis. These extracellular parasites adhere to the host epithelial cell surface. Although mucinases and proteases have been described as important proteins for parasite adhesion to epithelial cells, no studies have examined the role of the keratin molecules that cornify the vaginal epithelium. Here, we investigated the interaction of T. vaginalis and T. foetus with human keratin in vitro; additionally, adherence assays were performed in cattle with T. foetus to elucidate whether trichomonads were able to interact with keratin in vivo. We demonstrated that both T. vaginalisand T. foetusinteracted directly with keratin. Additionally, the trichomonads ingested and digested keratin, shedding new light on the Trichomonas infection process.  相似文献   

13.
Aims: We previously reported that Modified Field Stain (MF) can be used as a rapid stain for diagnosis. In the present study we extend the observation to include the stain as an alternative method to assess viability of the cells. Methods and Results: Six isolates of Trichomonas vaginalis were used to assess the utility of the Modified Field stain as a rapid viability test for T. vaginalis and to compare with 0·4% Trypan Blue dye exclusion test in three conditions; normal in vitro culture growth using Hollander medium, lysed in distilled water and treated with metronidazole. MF stain showed similar growth profile pattern as Trypan Blue dye exclusion for identifying viable cells of T. vaginalis. Although, Trypan Blue dye exclusion test is ready made, rapid and widely used in laboratory as reliable viability assay, however, the limitation using Trypan Blue is the dye was unable to show internal morphological changes during the parasite’s transition from being viable to non‐viable. On day 3 where cultures peaked the correlation factor of both assays done to assess the viability of parasites harvested from the controls, metronidazole and distilled water treated parasites were more than 0·9 respectively. Conclusions: This confirms that MF staining does not only record permanently the morphological changes and retain internal structural details but also provides a reliable and rapid viability assay for the parasites. Significance and Impact of the Study: Therefore, in our study, Modified Field’s stain may offer the researchers and laboratory technologists the opportunity to get the result on the same day and the most important thing is the ability to differentiate between viable and non‐viable of T. vaginalis under three different conditions (normal culture, drug and distilled water condition). Modified Field’s staining method enhanced the morphological identification of T. vaginalis compared to Trypan Blue dye exclusion.  相似文献   

14.
To evaluate the biological and biochemical characteristics of Trichomonas vaginalis KT9 isolate, the growth and size of trichomonads, pathogenicity in mouse, protein profiles and proteinase activity were examined after shifting the medium from TPS-1 into TYM. Generation time of trichomonads in TYM medium was 4.5 hr in comparison to TPS-1 with 7.1 hr. Size of trichomonads cultured in TPS-1 medium (8.5 ± 0.9 × 6.0 ± 0.9 µm) was significantly smaller than those in TYM medium (10.9 ± 1.4 × 8.2 ± 0.9 µm). Trichomonads cultured in TYM medium produced subcutaneous abscess in 9 out of 10 mice, whereas those in TPS-1 medium produced abscesses in 2 out of 10 mice. In SDS-PAGE, trichomonad lysates from both media showed ten common bands. However, trichomonads in TYM medium showed additional bands of 136 kDa, 116 kDa and 40 kDa in comparison to those in TPS-1 with 100 kDa. By immunoblot with T. vaginalis-immunized rabbit sera, T. vaginalis cultivated in both TYM and TPS-1 media showed 5 common bands, and unique bands of 116 kDa, 105 kDa, and 86 kDa were observed in trichomonads in TYM while a 140 kDa band in those in TPS-1. In gelatin SDS-PAGE, trichomonads in TYM degraded gelatin stronger than those in TPS-1. Also protease activity of trichomonads in TYM was significantly higher than that of trichomonads in TPS-1 using Bz-Pro-Phe-Arg-Nan as a substrate. According to the results, it is assumed that the shift from TPS-1 into TYM medium for cultivation of T. vaginalis might modulate the biological and biochemical properties of T. vaginalis in vitro.  相似文献   

15.
Wide-spread protozoan parasites carry endosymbiotic dsRNA viruses with uncharted implications to the human host. Among them, Trichomonas vaginalis, a parasite adapted to the human genitourinary tract, infects globally ∼250 million each year rendering them more susceptible to devastating pregnancy complications (especially preterm birth), HIV infection and HPV-related cancer. While first-line antibiotic treatment (metronidazole) commonly kills the protozoan pathogen, it fails to improve reproductive outcome. We show that endosymbiotic Trichomonasvirus, highly prevalent in T. vaginalis clinical isolates, is sensed by the human epithelial cells via Toll-like receptor 3, triggering Interferon Regulating Factor -3, interferon type I and proinflammatory cascades previously implicated in preterm birth and HIV-1 susceptibility. Metronidazole treatment amplified these proinflammatory responses. Thus, a new paradigm targeting the protozoan viruses along with the protozoan host may prevent trichomoniasis-attributable inflammatory sequelae.  相似文献   

16.
In this study, vaginal smears taken from 400 patients were examined cytologically using the Papanicolaou technique. Twenty of the 400 patients were detected as harbouring Trichomonas vaginalis. The interactions of T. vaginalis with epithelial cells, polymorphonuclear leucocytes (PMNLs) and erythrocytes were determined at light microscopic level. It was observed that T. vaginalis were juxtaposed to the epithelial cells and changed shape according to the contours of the epithelial cell revealing the cytopathic effect of trichomonads on epithelial cells. Trichomonads attached to PMNLs produced pseudopodia to phagocytose the cells. Occasionally an amoeboid shaped T. vaginalis organism was seen trailed by a row of PMNLs. This light microscopic study supports the production by trichomonads of a chemotactic factor for PMNLs. Phagocytosed erythrocytes were also seen in the cytoplasm of T. vaginalis, suggesting the need for the patient to be tested for anaemia.  相似文献   

17.
18.
The ribosomes of the amitochondriate but hydrogenosome-containing protist lineage, the trichomonads, have previously been reported to be prokaryotic or primitive eukaryotic, based on evidence that they have a 70S sedimentation coefficient and a small number of proteins, similar to prokaryotic ribosomes. In order to determine whether the components of the trichomonad ribosome indeed differ from those of typical eukaryotic ribosomes, the ribosome of a representative trichomonad, Trichomonas vaginalis, was characterized. The sedimentation coefficient of the T. vaginalis ribosome was smaller than that of Saccharomyces cerevisiae and larger than that of Escherichia coli. Based on two-dimensional PAGE analysis, the number of different ribosomal proteins was estimated to be approximately 80. This number is the same as those obtained for typical eukaryotes (approximately 80) but larger than that of E. coli (approximately 55). N-Terminal amino acid sequencing of 18 protein spots and the complete sequences of 4 ribosomal proteins as deduced from their genes revealed these sequences to display typical eukaryotic features. Phylogenetic analyses of the five ribosomal proteins currently available also clearly confirmed that the T. vaginalis sequences are positioned within a eukaryotic clade. Comparison of deduced secondary structure models of the small and large subunit rRNAs of T. vaginalis with those of other eukaryotes revealed that all helices commonly found in typical eukaryotes are present and conserved in T. vaginalis, while variable regions are shortened or lost. These lines of evidence demonstrate that the T. vaginalis ribosome has no prokaryotic or primitive eukaryotic features but is clearly a typical eukaryotic type.  相似文献   

19.
Y. Elad    Rina  Barak  I. Chet  Y. Henis 《Journal of Phytopathology》1983,107(2):168-175
The uhrastructural changes during parasitism of the biocontrol agents Trichoderma harzianum and T. hamatum, were observed under a transmission electron microscope. Electron micrographs show that during the interaction of Trichoderma spp. with either Sclerotium rolfsii or Rhizoctonia solani the hyphae of the parasites contact their host, and then enzymatically digest their cell walls. Extracellular fibrillar material is deposited between the interacting cells. Parasite organelles, e.g. mitochondria, vesicles and dark osmiophilic inclusions, accumulate in the parasitizing cells. In response to the invasion, the host produces a sheath matrix which encapasulates the penetrating hypha and the host cells become empty of cytoplasm.  相似文献   

20.

Background  

Trichomonosis caused by Trichomonas vaginalis is the number one, non-viral sexually transmitted disease (STD) that affects more than 250 million people worldwide. Immunoglobulin A (IgA) has been implicated in resistance to mucosal infections by pathogens. No reports are available of IgA-reactive proteins and the role, if any, of this class of antibody in the control of this STD. The availability of an IgA monoclonal antibody (mAb) immunoreactive to trichomonads by whole cell (WC)-ELISA prompted us to characterize the IgA-reactive protein of T. vaginalis.  相似文献   

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