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PMID: 16257530 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Toxin-antitoxin modules as bacterial metabolic stress managers.

Trends in biochemical sciences ·Vol. 30 ·No. 12 ·2005-12-00 ·Pages 672-9

Buts L, Lah J, Dao-Thi MH, Wyns L, Loris R

Abstract

Bacterial genomes frequently contain operons that encode a toxin and its antidote. These 'toxin-antitoxin (TA) modules' have an important role in bacterial stress physiology and might form the basis of multidrug resistance. The toxins in TA modules act as gyrase poisons or stall the ribosome by mediating the cleavage of mRNA. The antidotes contain an N-terminal DNA-binding region of variable fold and a C-terminal toxin-inhibiting domain. When bound to toxin, the C-terminal domain adopts an extended conformation. In the absence of toxin, by contrast, this domain (and sometimes the whole antidote protein) remains unstructured, allowing its fast degradation by proteolysis. Under silent conditions the antidote inhibits the toxin and the toxin-antidote complex acts as a repressor for the TA operon, whereas under conditions of activation proteolytic degradation of the antidote outpaces its synthesis.

MeSH Terms
Antitoxins/chemistry,genetics,metabolism Bacteria/genetics,metabolism Bacterial Toxins/chemistry,genetics,metabolism Base Sequence DNA Gyrase/metabolism DNA, Bacterial/genetics,metabolism Evolution, Molecular Models, Biological Models, Molecular Multiprotein Complexes Protein Folding RNA, Bacterial/metabolism RNA, Messenger/metabolism
Chemicals
Antitoxins Bacterial Toxins DNA, Bacterial Multiprotein Complexes RNA, Bacterial RNA, Messenger DNA Gyrase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Buts Lieven
Laboratorium voor Ultrastructuur, Vrije Universiteit Brussel, and Department of Molecular and Cellular Interactions, Vlaams Interuniversitair Instituut voor Biotechnologie, Pleinlaan 2, B-1050 Brussel, Belgium.
Lah Jurij
Dao-Thi Minh-Hoa
Wyns Lode
Loris Remy
Article Info
Journal
Trends in biochemical sciences
Abbr.
Trends Biochem Sci
ISSN
0968-0004
Published
2005-12-00
Epub
2005-00-28
Pages
672-9
Language
English
Region
England
NLM ID
7610674
Subset
IM
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