The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.

PPE represent a peculiar family of mycobacterial proteins characterized by a 180 aminoacids conserved N-terminal domain. Several PPE genes are co-transcribed with a gene encoding for a protein belonging to another family of mycobacterial specific proteins named PE. Only one PE-PPE couple has been ex...

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Main Authors: Valentina Donà, Marcello Ventura, Michela Sali, Alessandro Cascioferro, Roberta Provvedi, Giorgio Palù, Giovanni Delogu, Riccardo Manganelli
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23469198/?tool=EBI
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spelling doaj-3d300b74b39d4fe797a8ebe99f2922512021-03-03T23:38:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0183e5751710.1371/journal.pone.0057517The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.Valentina DonàMarcello VenturaMichela SaliAlessandro CascioferroRoberta ProvvediGiorgio PalùGiovanni DeloguRiccardo ManganelliPPE represent a peculiar family of mycobacterial proteins characterized by a 180 aminoacids conserved N-terminal domain. Several PPE genes are co-transcribed with a gene encoding for a protein belonging to another family of mycobacterial specific proteins named PE. Only one PE-PPE couple has been extensively characterized so far (PE25-PPE41) and it was shown that these two proteins form a heterodimer and that this interaction is essential for PPE41 stability and translocation through the mycobacterial cell wall. In this study we characterize the PE11-PPE17 couple. In contrast with what was found for PE25-PPE41, we show that PPE17 is not secreted but surface exposed. Moreover, we demonstrate that the presence of PE11 is not necessary for PPE17 stability or for its localization on the mycobacterial surface. Finally, we show that the PPE domain of PPE17 targets the mycobacterial cell wall and that this domain can be used as a fusion partner to expose heterologous proteins on the mycobacterial surface.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23469198/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Valentina Donà
Marcello Ventura
Michela Sali
Alessandro Cascioferro
Roberta Provvedi
Giorgio Palù
Giovanni Delogu
Riccardo Manganelli
spellingShingle Valentina Donà
Marcello Ventura
Michela Sali
Alessandro Cascioferro
Roberta Provvedi
Giorgio Palù
Giovanni Delogu
Riccardo Manganelli
The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
PLoS ONE
author_facet Valentina Donà
Marcello Ventura
Michela Sali
Alessandro Cascioferro
Roberta Provvedi
Giorgio Palù
Giovanni Delogu
Riccardo Manganelli
author_sort Valentina Donà
title The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
title_short The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
title_full The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
title_fullStr The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
title_full_unstemmed The PPE domain of PPE17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
title_sort ppe domain of ppe17 is responsible for its surface localization and can be used to express heterologous proteins on the mycobacterial surface.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description PPE represent a peculiar family of mycobacterial proteins characterized by a 180 aminoacids conserved N-terminal domain. Several PPE genes are co-transcribed with a gene encoding for a protein belonging to another family of mycobacterial specific proteins named PE. Only one PE-PPE couple has been extensively characterized so far (PE25-PPE41) and it was shown that these two proteins form a heterodimer and that this interaction is essential for PPE41 stability and translocation through the mycobacterial cell wall. In this study we characterize the PE11-PPE17 couple. In contrast with what was found for PE25-PPE41, we show that PPE17 is not secreted but surface exposed. Moreover, we demonstrate that the presence of PE11 is not necessary for PPE17 stability or for its localization on the mycobacterial surface. Finally, we show that the PPE domain of PPE17 targets the mycobacterial cell wall and that this domain can be used as a fusion partner to expose heterologous proteins on the mycobacterial surface.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23469198/?tool=EBI
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