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PMID: 15207491 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Mycobacterium tuberculosis gene expression during adaptation to stationary phase and low-oxygen dormancy.

Tuberculosis (Edinburgh, Scotland) ·Vol. 84 ·No. 3-4 ·2004-00-00 ·Pages 218-27

Voskuil MI, Visconti KC, Schoolnik GK

Abstract

The innate mechanisms used by Mycobacterium tuberculosis to persist during periods of non-proliferation are central to understanding the physiology of the bacilli during latent disease. We have used whole genome expression profiling to expose adaptive mechanisms initiated by M. tuberculosis in two common models of M. tuberculosis non-proliferation. The first of these models was a standard growth curve in which gene expression changes were followed from exponential growth through the transition to stationary phase. In the second model, we followed the adaptive process of M. tuberculosis during transition from aerobic growth to a state of anaerobic non-replicating persistence. The most striking finding from these experiments was the strong induction of the entire DosR "dormancy" regulon over approximately 20 days during the long transition to an anaerobic state. This is contrasted by the muted overall response to aerated stationary phase with only a partial dormancy regulon response. From the results presented here we conclude that the respiration-limited environment of the oxygen-depleted NRP model recreates at least one fundamental factor for which the genome of M. tuberculosis encodes a decisive adaptive program.

MeSH Terms
Adaptation, Physiological/genetics Anaerobiosis/physiology Cluster Analysis DNA, Bacterial/genetics Gene Expression Regulation, Bacterial/physiology Genes, Bacterial/genetics In Vitro Techniques Mycobacterium tuberculosis/genetics,growth & development,physiology Oligonucleotide Array Sequence Analysis RNA, Bacterial/genetics RNA, Messenger/genetics
Chemicals
DNA, Bacterial RNA, Bacterial RNA, Messenger
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Voskuil M I
Department of Microbiology, University of Colorado Health Sciences Center, Denver 80262, USA. Martin.Voskuil@UCHSC.edu
Visconti K C
Schoolnik G K
Article Info
Journal
Tuberculosis (Edinburgh, Scotland)
Abbr.
Tuberculosis (Edinb)
ISSN
1472-9792
Published
2004-00-00
Pages
218-27
Language
English
Region
Scotland
NLM ID
100971555
Subset
IM
Grants
NIAID NIH HHS · AI 44826 · United States
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