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Surface Interactome in Streptococcus pyogenes

Authors :
Barbara Lelli
Fabiana Falugi
Silvia Pileri
Luisa Bracci
Emiliano Chiarot
Guido Grandi
Elia Bove
Alfredo Pezzicoli
Nathalie Norais
Sergio Balloni
Vittorio Tedde
Cesira Galeotti
Renata Grifantini
Mauro Bombaci
Marco Soriani
Renzo Nogarotto
Galeotti CL
Bove E
Pezzicoli A
Nogarotto R
Norais N
Pileri S
Lelli B
Falugi F
Balloni S
Tedde V
Chiarot E
Bombaci M
Soriani M
Bracci L
Grandi G
Grifantini R
Source :
Molecular & Cellular Proteomics. 11:M111.015206
Publication Year :
2012
Publisher :
Elsevier BV, 2012.

Abstract

Very few studies have so far been dedicated to the systematic analysis of protein interactions occurring between surface and/or secreted proteins in bacteria. Such interactions are expected to play pivotal biological roles that deserve investigation. Taking advantage of the availability of a detailed map of surface and secreted proteins in Streptococcus pyogenes (group A Streptococcus (GAS)), we used protein array technology to define the "surface interactome" in this important human pathogen. Eighty-three proteins were spotted on glass slides in high density format, and each of the spotted proteins was probed for its capacity to interact with any of the immobilized proteins. A total of 146 interactions were identified, 25 of which classified as "reciprocal," namely, interactions that occur irrespective of which of the two partners was immobilized on the chip or in solution. Several of these interactions were validated by surface plasmon resonance and supported by confocal microscopy analysis of whole bacterial cells. By this approach, a number of interesting interactions have been discovered, including those occurring between OppA, DppA, PrsA, and TlpA, proteins known to be involved in protein folding and transport. These proteins, all localizing at the septum, might be part, together with HtrA, of the recently described ExPortal complex of GAS. Furthermore, SpeI was found to strongly interact with the metal transporters AdcA and Lmb. Because SpeI strictly requires zinc to exert its function, this finding provides evidence on how this superantigen, a major player in GAS pathogenesis, can acquire the metal in the host environment, where it is largely sequestered by carrier proteins. We believe that the approach proposed herein can lead to a deeper knowledge of the mechanisms underlying bacterial invasion, colonization, and pathogenesis.

Details

ISSN :
15359476
Volume :
11
Database :
OpenAIRE
Journal :
Molecular & Cellular Proteomics
Accession number :
edsair.doi.dedup.....a157d5cfe75f4dbec4f8a550629ed205