Background.Trichomonas vaginalisis the most common non-viral human sexually transmitted pathogen and importantly, contributes to facilitating the spread of HIV. Yet very little is known about its surface and secreted proteins mediating interactions with, and permitting the invasion and colonisation of, the host mucosa. Initial annotations ofT. vaginalisgenome identified a plethora of candidate extracellular proteins.Results. Data mining of theT. vaginalisgenome identified 911 BspA-like entries (TvBspA) sharing TpLRR-like leucine-rich repeats, which represent the largest gene family encoding potential extracellular proteins for the pathogen. A broad range of microorganisms encoding BspA-like proteins was identified and these are mainly known to live on mucosal surfaces, among theseT. vaginalisis endowed with the largest gene family. Over 190 TvBspA proteins with inferred transmembrane domains were characterised by a considerable structural diversity between their TpLRR and other types of repetitive sequences and two subfamilies possessed distinct classic sorting signal motifs for endocytosis. One TvBspA subfamily also shared a glycine-rich protein domain with proteins fromClostridium difficilepathogenic strains andC. difficilephages. Consistent with the hypothesis that TvBspA protein structural diversity implies diverse roles, we demonstrated for several TvBspA genes differential expression at the transcript level in different growth conditions. Identified variants of repetitive segments between several TvBspA paralogues and orthologues from two clinical isolates were also consistent with TpLRR and other repetitive sequences to be functionally important. For one TvBspA protein cell surface expression and antibody responses by both female and maleT. vaginalisinfected patients were also demonstrated.Conclusions. The biased mucosal habitat for microbial species encoding BspA-like proteins, the characterisation of a vast structural diversity for the TvBspA proteins, differential expression of a subset of TvBspA genes and the cellular localisation and immunological data for one TvBspA; all point to the importance of the TvBspA proteins to various aspects ofT. vaginalispathobiology at the host-pathogen interface.

Trichomonas vaginalisvast BspA-like gene family: evidence for functional diversity from structural organisation and transcriptomics / Fiori, Pier Luigi; Diaz, Nicia Maria Luisa Eugenia; Šafaříková, Lucie; Tachezy, Jan; Tang, Petrus; Hirt, Robert P.; Noel, Christophe J.; Sicheritz Pontén, Thomas. - In: BMC GENOMICS. - ISSN 1471-2164. - 11:(2010), pp. 1-26. [10.1186/1471-2164-11-99]

Trichomonas vaginalisvast BspA-like gene family: evidence for functional diversity from structural organisation and transcriptomics

Fiori, Pier Luigi;
2010-01-01

Abstract

Background.Trichomonas vaginalisis the most common non-viral human sexually transmitted pathogen and importantly, contributes to facilitating the spread of HIV. Yet very little is known about its surface and secreted proteins mediating interactions with, and permitting the invasion and colonisation of, the host mucosa. Initial annotations ofT. vaginalisgenome identified a plethora of candidate extracellular proteins.Results. Data mining of theT. vaginalisgenome identified 911 BspA-like entries (TvBspA) sharing TpLRR-like leucine-rich repeats, which represent the largest gene family encoding potential extracellular proteins for the pathogen. A broad range of microorganisms encoding BspA-like proteins was identified and these are mainly known to live on mucosal surfaces, among theseT. vaginalisis endowed with the largest gene family. Over 190 TvBspA proteins with inferred transmembrane domains were characterised by a considerable structural diversity between their TpLRR and other types of repetitive sequences and two subfamilies possessed distinct classic sorting signal motifs for endocytosis. One TvBspA subfamily also shared a glycine-rich protein domain with proteins fromClostridium difficilepathogenic strains andC. difficilephages. Consistent with the hypothesis that TvBspA protein structural diversity implies diverse roles, we demonstrated for several TvBspA genes differential expression at the transcript level in different growth conditions. Identified variants of repetitive segments between several TvBspA paralogues and orthologues from two clinical isolates were also consistent with TpLRR and other repetitive sequences to be functionally important. For one TvBspA protein cell surface expression and antibody responses by both female and maleT. vaginalisinfected patients were also demonstrated.Conclusions. The biased mucosal habitat for microbial species encoding BspA-like proteins, the characterisation of a vast structural diversity for the TvBspA proteins, differential expression of a subset of TvBspA genes and the cellular localisation and immunological data for one TvBspA; all point to the importance of the TvBspA proteins to various aspects ofT. vaginalispathobiology at the host-pathogen interface.
2010
Trichomonas vaginalisvast BspA-like gene family: evidence for functional diversity from structural organisation and transcriptomics / Fiori, Pier Luigi; Diaz, Nicia Maria Luisa Eugenia; Šafaříková, Lucie; Tachezy, Jan; Tang, Petrus; Hirt, Robert P.; Noel, Christophe J.; Sicheritz Pontén, Thomas. - In: BMC GENOMICS. - ISSN 1471-2164. - 11:(2010), pp. 1-26. [10.1186/1471-2164-11-99]
File in questo prodotto:
File Dimensione Formato  
Noel_C_Trichomonas_vaginalis_vast_BspA-like.pdf

accesso aperto

Tipologia: Versione editoriale (versione finale pubblicata)
Licenza: Creative commons
Dimensione 2.11 MB
Formato Adobe PDF
2.11 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/262319
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 68
  • ???jsp.display-item.citation.isi??? 63
social impact