The Legionella pneumophila Dot/Icm type IV secretion system and its effectors
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Published version
Author(s)
Lockwood, Daniel C
Amin, Himani
Costa, Tiago RD
Schroeder, Gunnar N
Type
Journal Article
Abstract
To prevail in the interaction with eukaryotic hosts, many bacterial pathogens use protein secretion systems to release virulence factors at the host–pathogen interface and/or deliver them directly into host cells. An outstanding example of the complexity and sophistication of secretion systems and the diversity of their protein substrates, effectors, is the Defective in organelle trafficking/Intracellular multiplication (Dot/Icm) Type IVB secretion system (T4BSS) of Legionella pneumophila and related species. Legionella species are facultative intracellular pathogens of environmental protozoa and opportunistic human respiratory pathogens. The Dot/Icm T4BSS translocates an exceptionally large number of effectors, more than 300 per L. pneumophila strain, and is essential for evasion of phagolysosomal degradation and exploitation of protozoa and human macrophages as replicative niches. Recent technological advancements in the imaging of large protein complexes have provided new insight into the architecture of the T4BSS and allowed us to propose models for the transport mechanism. At the same time, significant progress has been made in assigning functions to about a third of L. pneumophila effectors, discovering unprecedented new enzymatic activities and concepts of host subversion. In this review, we describe the current knowledge of the workings of the Dot/Icm T4BSS machinery and provide an overview of the activities and functions of the to-date characterized effectors in the interaction of L. pneumophila with host cells.
Date Issued
2022-05-31
Date Acceptance
2022-04-22
Citation
Microbiology, 2022, 168 (5)
ISSN
1350-0872
Publisher
Microbiology Society
Journal / Book Title
Microbiology
Volume
168
Issue
5
Copyright Statement
7 © 2022 The Authors
This is an open-access article distributed under the terms of the Creative Commons Attribution License. This article was made open access via a Publish and Read agreement between
the Microbiology Society and the corresponding author’s institution
This is an open-access article distributed under the terms of the Creative Commons Attribution License. This article was made open access via a Publish and Read agreement between
the Microbiology Society and the corresponding author’s institution
License URL
Sponsor
Wellcome Trust
National Institute of Health (NIH-USA)
Identifier
https://www.microbiologyresearch.org/content/journal/micro/10.1099/mic.0.001187
Grant Number
215164/Z/18/Z
R01AI146093
Subjects
Microbiology
Publication Status
Published