Helicobacter pylori VacA Toxin/Subunit p34: Targeting of an Anion Channel to the Inner Mitochondrial Membrane

Autor(en): Domanska, Grazyna
Motz, Christian
Meinecke, Michael
Harsman, Anke
Papatheodorou, Panagiotis
Reljic, Boris
Dian-Lothrop, Elke A.
Galmiche, Antoine
Kepp, Oliver
Becker, Lars
Guennewig, Kathrin
Wagner, Richard 
Rassow, Joachim
Stichwörter: BETA-BARREL; CYTOCHROME-C RELEASE; GASTRIC-CANCER CELLS; IMPORT PORE; LIPID-BILAYERS; Microbiology; Parasitology; PREPROTEIN TRANSLOCASE; SACCHAROMYCES-CEREVISIAE; SELECTIVE CHANNELS; TOM40 FORMS; VACUOLATING CYTOTOXIN; Virology
Erscheinungsdatum: 2010
Herausgeber: PUBLIC LIBRARY SCIENCE
Journal: PLOS PATHOGENS
Volumen: 6
Ausgabe: 4
Zusammenfassung: 
The vacuolating toxin VacA, released by Helicobacter pylori, is an important virulence factor in the pathogenesis of gastritis and gastroduodenal ulcers. VacA contains two subunits: The p58 subunit mediates entry into target cells, and the p34 subunit mediates targeting to mitochondria and is essential for toxicity. In this study we found that targeting to mitochondria is dependent on a unique signal sequence of 32 uncharged amino acid residues at the p34 N-terminus. Mitochondrial import of p34 is mediated by the import receptor Tom20 and the import channel of the outer membrane TOM complex, leading to insertion of p34 into the mitochondrial inner membrane. p34 assembles in homo-hexamers of extraordinary high stability. CD spectra of the purified protein indicate a content of >40% beta-strands, similar to pore-forming beta-barrel proteins. p34 forms an anion channel with a conductivity of about 12 pS in 1.5 M KCl buffer. Oligomerization and channel formation are independent both of the 32 uncharged N-terminal residues and of the p58 subunit of the toxin. The conductivity is efficiently blocked by 5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB), a reagent known to inhibit VacA-mediated apoptosis. We conclude that p34 essentially acts as a small pore-forming toxin, targeted to the mitochondrial inner membrane by a special hydrophobic N-terminal signal.
ISSN: 15537366
DOI: 10.1371/journal.ppat.1000878

Zur Langanzeige

Seitenaufrufe

2
Letzte Woche
0
Letzter Monat
0
geprüft am 18.05.2024

Google ScholarTM

Prüfen

Altmetric