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A Proteomic Signature of Dormancy in the Actinobacterium Micrococcus Luteus

Overview
Journal J Bacteriol
Specialty Microbiology
Date 2017 May 10
PMID 28484042
Citations 11
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Abstract

Dormancy is a protective state in which diverse bacteria, including , , (syphilis), and (Lyme disease), curtail metabolic activity to survive external stresses, including antibiotics. Evidence suggests dormancy consists of a continuum of interrelated states, including viable but nonculturable (VBNC) and persistence states. VBNC and persistence contribute to antibiotic tolerance, reemergence from latent infections, and even quorum sensing and biofilm formation. Previous studies indicate that the protein mechanisms regulating persistence and VBNC states are not well understood. We have queried the VBNC state of NCTC 2665 (MI-2665) by quantitative proteomics combining gel electrophoresis, high-performance liquid chromatography, and tandem mass spectrometry to elucidate some of these mechanisms. MI-2665 is a nonpathogenic actinobacterium containing a small (2.5-Mb), high-GC-content genome which exhibits a well-defined VBNC state induced by nutrient deprivation. The MI-2665 VBNC state demonstrated a loss of protein diversity accompanied by increased levels of 18 proteins that are conserved across actinobacteria, 14 of which have not been previously identified in VNBC. These proteins implicate an anaplerotic strategy in the transition to VBNC, including changes in the glyoxylate shunt, redox and amino acid metabolism, and ribosomal regulatory processes. Our data suggest that MI-2665 is a viable model for dissecting the protein mechanisms underlying the VBNC stress response and provide the first protein-level signature of this state. We expect that this protein signature will enable future studies deciphering the protein mechanisms of dormancy and identify novel therapeutic strategies effective against antibiotic-tolerant bacterial infections. Dormancy is a protective state enabling bacteria to survive antibiotics, starvation, and the immune system. Dormancy is comprised of different states, including persistent and viable but nonculturable (VBNC) states that contribute to the spread of bacterial infections. Therefore, it is imperative to identify how bacteria utilize these different dormancy states to survive antibiotic treatment. The objective of our research is to eliminate dormancy as a route to antibiotic tolerance by understanding the proteins that control dormancy in NCTC 2665. This bacterium has unique advantages for studying dormancy, including a small genome and a well-defined and reproducible VBNC state. Our experiments implicate four previously identified and 14 novel proteins upregulated in VBNC that may regulate this critical survival mechanism.

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References
1.
Rosenkrands I, Slayden R, Crawford J, Aagaard C, Barry 3rd C, Andersen P . Hypoxic response of Mycobacterium tuberculosis studied by metabolic labeling and proteome analysis of cellular and extracellular proteins. J Bacteriol. 2002; 184(13):3485-91. PMC: 135148. DOI: 10.1128/JB.184.13.3485-3491.2002. View

2.
Geer L, Markey S, Kowalak J, Wagner L, Xu M, Maynard D . Open mass spectrometry search algorithm. J Proteome Res. 2004; 3(5):958-64. DOI: 10.1021/pr0499491. View

3.
Voskuil M, Visconti K, Schoolnik G . Mycobacterium tuberculosis gene expression during adaptation to stationary phase and low-oxygen dormancy. Tuberculosis (Edinb). 2004; 84(3-4):218-27. DOI: 10.1016/j.tube.2004.02.003. View

4.
Ueta M, Yoshida H, Wada C, Baba T, Mori H, Wada A . Ribosome binding proteins YhbH and YfiA have opposite functions during 100S formation in the stationary phase of Escherichia coli. Genes Cells. 2005; 10(12):1103-12. DOI: 10.1111/j.1365-2443.2005.00903.x. View

5.
Besnard V, Federighi M, Declerq E, Jugiau F, Cappelier J . Environmental and physico-chemical factors induce VBNC state in Listeria monocytogenes. Vet Res. 2002; 33(4):359-70. DOI: 10.1051/vetres:2002022. View