Dissemin is shutting down on January 1st, 2025

Published in

American Society for Microbiology, Microbiology Spectrum, 4(7), 2019

DOI: 10.1128/microbiolspec.gpp3-0043-2018

Gram-Positive Pathogens, p. 1129-1153, 2019

DOI: 10.1128/9781683670131.ch68

Links

Tools

Export citation

Search in Google Scholar

Protein Export into and across the Atypical Diderm Cell Envelope of Mycobacteria

Journal article published in 2019 by Vincent J. C. van Winden, Edith N. G. Houben ORCID, Miriam Braunstein
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

Full text: Download

Green circle
Preprint: archiving allowed
Green circle
Postprint: archiving allowed
Orange circle
Published version: archiving restricted
Data provided by SHERPA/RoMEO

Abstract

ABSTRACT Mycobacteria, including the infamous pathogen Mycobacterium tuberculosis , are high-GC Gram-positive bacteria with a distinctive cell envelope. Although there is a typical inner membrane, the mycobacterial cell envelope is unusual in having its peptidoglycan layer connected to a polymer of arabinogalactan, which in turn is covalently attached to long-chain mycolic acids that help form a highly impermeable mycobacterial outer membrane. This complex double-membrane, or diderm, cell envelope imparts mycobacteria with unique requirements for protein export into and across the cell envelope for secretion into the extracellular environment. In this article, we review the four protein export pathways known to exist in mycobacteria: two conserved systems that exist in all types of bacteria (the Sec and Tat pathways) and two specialized systems that exist in mycobacteria, corynebacteria, and a subset of low-GC Gram-positive bacteria (the SecA2 and type VII secretion pathways). We describe the progress made over the past 15 years in understanding each of these mycobacterial export pathways, and we highlight the need for research to understand the specific steps of protein export across the mycobacterial outer membrane.