Literature DB >> 9785446

Increased alanine dehydrogenase activity during dormancy in Mycobacterium smegmatis.

B Hutter1, T Dick.   

Abstract

The aerobic fast-growing Mycobacterium smegmatis has, like its slow-growing pathogenic counterpart M. tuberculosis, the capability to adapt to anaerobiosis by shifting down to a drug resistant dormant state. Here, we report the identification of the first enzyme, L-alanine dehydrogenase, whose specific activity is increased during dormancy development in M. smegmatis. This mycobacterial enzyme activity was previously identified as the 40-kDa antigen in M. tuberculosis and shows a preference for the reductive amination of pyruvate to alanine at physiological pH. The determination of the temporal profile of alanine dehydrogenase activity during dormancy development showed that the activity stayed at a low baseline level during the initial aerobic exponential growth phase (0.7 mU mg-1 min-1). After termination of aerobic growth, alanine dehydrogenase activity increased rapidly 5-fold. As oxygen becomes more and more limiting, the enzyme activity declined until it reached a level about two-third that of the peak value. The strong induction immediately after deflection from aerobic growth suggests that alanine might be required for the adaptation from aerobic growth to anaerobic dormancy. As alanine synthesis is coupled to NADH oxidation, we propose that the induction of alanine dehydrogenase activity might also support the maintenance of the NAD pool when oxygen as a terminal electron acceptor becomes limiting.

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Year:  1998        PMID: 9785446     DOI: 10.1111/j.1574-6968.1998.tb13200.x

Source DB:  PubMed          Journal:  FEMS Microbiol Lett        ISSN: 0378-1097            Impact factor:   2.742


  30 in total

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2.  HLA-A2-restricted CD8+-cytotoxic-T-cell responses to novel epitopes in Mycobacterium tuberculosis superoxide dismutase, alanine dehydrogenase, and glutamine synthetase.

Authors:  Yuzhi Dong; Sandra Demaria; Xuming Sun; Fabio R Santori; Bill M Jesdale; Anne S De Groot; William N Rom; Yuri Bushkin
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3.  Crystallization and preliminary X-ray analysis of an alanine dehydrogenase from Bacillus megaterium WSH-002.

Authors:  Xiaoyun Lu; Qiufen Yi; Guofang Zhang; Xianming Zhu; Honggang Zhou; Hui Dong
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2013-07-27

4.  Alteration of substrate specificity of alanine dehydrogenase.

Authors:  Puja Fernandes; Hannah Aldeborgh; Lauren Carlucci; Lauren Walsh; Jordan Wasserman; Edward Zhou; Scott T Lefurgy; Emily C Mundorff
Journal:  Protein Eng Des Sel       Date:  2014-12-23       Impact factor: 1.650

5.  ald of Mycobacterium tuberculosis encodes both the alanine dehydrogenase and the putative glycine dehydrogenase.

Authors:  Michelle M Giffin; Lucia Modesti; Ronald W Raab; Lawrence G Wayne; Charles D Sohaskey
Journal:  J Bacteriol       Date:  2011-12-30       Impact factor: 3.490

6.  Metabolic profiling of dormant Mycolicibacterium smegmatis cells' reactivation reveals a gradual assembly of metabolic processes.

Authors:  Vadim D Nikitushkin; Sandra Trenkamp; Galina R Demina; Margarita O Shleeva; Arseny S Kaprelyants
Journal:  Metabolomics       Date:  2020-02-06       Impact factor: 4.290

7.  Oxygen depletion-induced dormancy in Mycobacterium bovis BCG.

Authors:  A Lim; M Eleuterio; B Hutter; B Murugasu-Oei; T Dick
Journal:  J Bacteriol       Date:  1999-04       Impact factor: 3.490

8.  Mycobacterium aurum is Unable to Survive Mycobacterium tuberculosis Latency Associated Stress Conditions: Implications as Non-suitable Model Organism.

Authors:  Shivani Sood; Anant Yadav; Rahul Shrivastava
Journal:  Indian J Microbiol       Date:  2016-01-12       Impact factor: 2.461

Review 9.  Alanine dehydrogenases in mycobacteria.

Authors:  Ji-A Jeong; Jeong-Il Oh
Journal:  J Microbiol       Date:  2019-01-31       Impact factor: 3.422

10.  A lacZ Reporter-Based Strategy for Rapid Expression Analysis and Target Validation of Mycobacterium tuberculosis Latent Infection Genes.

Authors:  Shivani Sood; Satinder Kaur; Rahul Shrivastava
Journal:  Curr Microbiol       Date:  2015-11-23       Impact factor: 2.188

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