RRC ID 35569
著者 Patil AG, Sang PB, Govindan A, Varshney U.
タイトル Mycobacterium tuberculosis MutT1 (Rv2985) and ADPRase (Rv1700) proteins constitute a two-stage mechanism of 8-oxo-dGTP and 8-oxo-GTP detoxification and adenosine to cytidine mutation avoidance.
ジャーナル J Biol Chem
Abstract Approximately one third of the world population is infected with Mycobacterium tuberculosis, the causative agent of tuberculosis. A better understanding of the pathogen biology is crucial to develop new tools/strategies to tackle its spread and treatment. In the host macrophages, the pathogen is exposed to reactive oxygen species, known to damage dGTP and GTP to 8-oxo-dGTP and 8-oxo-GTP, respectively. Incorporation of the damaged nucleotides in nucleic acids is detrimental to organisms. MutT proteins, belonging to a class of Nudix hydrolases, hydrolyze 8-oxo-G nucleoside triphosphates/diphosphates to the corresponding nucleoside monophosphates and sanitize the nucleotide pool. Mycobacteria possess several MutT proteins. However, a functional homolog of Escherichia coli MutT has not been identified. Here, we characterized MtuMutT1 and Rv1700 proteins of M. tuberculosis. Unlike other MutT proteins, MtuMutT1 converts 8-oxo-dGTP to 8-oxo-dGDP, and 8-oxo-GTP to 8-oxo-GDP. Rv1700 then converts them to the corresponding nucleoside monophosphates. This observation suggests the presence of a two-stage mechanism of 8-oxo-dGTP/8-oxo-GTP detoxification in mycobacteria. MtuMutT1 converts 8-oxo-dGTP to 8-oxo-dGDP with a Km of ∼50 μM and Vmax of ∼0.9 pmol/min per ng of protein, and Rv1700 converts 8-oxo-dGDP to 8-oxo-dGMP with a Km of ∼9.5 μM and Vmax of ∼0.04 pmol/min per ng of protein. Together, MtuMutT1 and Rv1700 offer maximal rescue to E. coli for its MutT deficiency by decreasing A to C mutations (a hallmark of MutT deficiency). We suggest that the concerted action of MtuMutT1 and Rv1700 plays a crucial role in survival of bacteria against oxidative stress.
巻・号 288(16)
ページ 11252-62
公開日 2013-4-19
DOI 10.1074/jbc.M112.442566
PII S0021-9258(20)67202-7
PMID 23463507
PMC PMC3630869
MeSH 8-Hydroxy-2'-Deoxyguanosine Adenosine / genetics Adenosine / metabolism* Bacterial Proteins / genetics Bacterial Proteins / metabolism* Cytidine / genetics Cytidine / metabolism* Deoxyguanosine / analogs & derivatives* Deoxyguanosine / genetics Deoxyguanosine / metabolism Humans Mutation Mycobacterium tuberculosis / enzymology* Mycobacterium tuberculosis / genetics Oxidative Stress / physiology* Pyrophosphatases / genetics Pyrophosphatases / metabolism* Sequence Homology, Amino Acid
IF 4.238
引用数 20
WOS 分野 BIOCHEMISTRY & MOLECULAR BIOLOGY
リソース情報
原核生物(大腸菌) JW0097-KC