Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore, 560012, India.
Department of Biochemistry, Indian Institute of Science, Bangalore, 560012, India.
Microbiology (Reading). 2010 Jan;156(Pt 1):88-93. doi: 10.1099/mic.0.033621-0. Epub 2009 Sep 24.
Oxidative damage to DNA results in the occurrence of 7,8-dihydro-8-oxoguanine (8-oxoG) in the genome. In eubacteria, repair of such damage is initiated by two major base-excision repair enzymes, MutM and MutY. We generated a MutY-deficient strain of Mycobacterium smegmatis to investigate the role of this enzyme in DNA repair. The MutY deficiency in M. smegmatis did not result in either a noteworthy susceptibility to oxidative stress or an increase in the mutation rate. However, rifampicin-resistant isolates of the MutY-deficient strain showed distinct mutations in the rifampicin-resistance-determining region of rpoB. Besides the expected C to A (or G to T) mutations, an increase in A to C (or T to G) mutations was also observed. Biochemical characterization of mycobacterial MutY (M. smegmatis and M. tuberculosis) revealed an expected excision of A opposite 8-oxoG in DNA. Additionally, excision of G and T opposite 8-oxoG was detected. MutY formed complexes with DNA containing 8-oxoG : A, 8-oxoG : G or 8-oxoG : T but not 8-oxoG : C pairs. Primer extension reactions in cell-free extracts of M. smegmatis suggested error-prone incorporation of nucleotides into the DNA. Based on these observations, we discuss the physiological role of MutY in specific mutation prevention in mycobacteria.
DNA 的氧化损伤会导致基因组中出现 7,8-二氢-8-氧鸟嘌呤(8-oxoG)。在真细菌中,这种损伤的修复是由两种主要的碱基切除修复酶 MutM 和 MutY 启动的。我们生成了一株 Mycobacterium smegmatis 的 MutY 缺陷菌株,以研究该酶在 DNA 修复中的作用。M. smegmatis 中的 MutY 缺陷既不会导致对氧化应激的显著敏感性增加,也不会导致突变率增加。然而,MutY 缺陷株的利福平抗性分离株在 rpoB 的利福平抗性决定区显示出明显的突变。除了预期的 C 到 A(或 G 到 T)突变外,还观察到 A 到 C(或 T 到 G)突变的增加。对分枝杆菌 MutY(M. smegmatis 和 M. tuberculosis)的生化特性进行了研究,发现其在 DNA 中预期地切除了与 8-oxoG 相对的 A。此外,还检测到与 8-oxoG 相对的 G 和 T 的切除。MutY 与含有 8-oxoG:A、8-oxoG:G 或 8-oxoG:T 但不与 8-oxoG:C 对的 DNA 形成复合物。M. smegmatis 无细胞提取物中的引物延伸反应表明核苷酸易错地掺入到 DNA 中。基于这些观察结果,我们讨论了 MutY 在分枝杆菌中特定突变预防中的生理作用。