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dATP的氧化形式是人类MutT同源蛋白hMTH1的底物。

The oxidized forms of dATP are substrates for the human MutT homologue, the hMTH1 protein.

作者信息

Fujikawa K, Kamiya H, Yakushiji H, Fujii Y, Nakabeppu Y, Kasai H

机构信息

Department of Environmental Oncology, Institute of Industrial Ecological Sciences, University of Occupational and Environmental Health, 1-1 Iseigaoka, Yahatanishi-ku, Kitakyushu 807-8555, Japan.

出版信息

J Biol Chem. 1999 Jun 25;274(26):18201-5. doi: 10.1074/jbc.274.26.18201.

Abstract

The possibility that Escherichia coli MutT and human MTH1 (hMTH1) hydrolyze oxidized DNA precursors other than 8-hydroxy-dGTP (8-OH-dGTP) was investigated. We report here that hMTH1 hydrolyzed 2-hydroxy-dATP (2-OH-dATP) and 8-hydroxy-dATP (8-OH-dATP), oxidized forms of dATP, but not (R)-8,5'-cyclo-dATP, 5-hydroxy-dCTP, and 5-formyl-dUTP. The kinetic parameters indicated that 2-OH-dATP was hydrolyzed more efficiently and with higher affinity than 8-OH-dGTP. 8-OH-dATP was hydrolyzed as efficiently as 8-OH-dGTP. The preferential hydrolysis of 2-OH-dATP over 8-OH-dGTP was observed at all of the pH values tested (pH 7.2 to pH 8.8). In particular, a 5-fold difference in the hydrolysis efficiencies for 2-OH-dATP over 8-OH-dGTP was found at pH 7.2. However, E. coli MutT had no hydrolysis activity for either 2-OH-dATP or 8-OH-dATP. Thus, E. coli MutT is an imperfect counterpart for hMTH1. Furthermore, we found that 2-hydroxy-dADP and 8-hydroxy-dGDP competitively inhibited both the 2-OH-dATP hydrolase and 8-OH-dGTP hydrolase activities of hMTH1. The inhibitory effects of 2-hydroxy-dADP were 3-fold stronger than those of 8-hydroxy-dGDP. These results suggest that the three damaged nucleotides share the same recognition site of hMTH1 and that it is a more important sanitization enzyme than expected thus far.

摘要

研究了大肠杆菌MutT和人类MTH1(hMTH1)水解除8-羟基-dGTP(8-OH-dGTP)之外的氧化DNA前体的可能性。我们在此报告,hMTH1可水解dATP的氧化形式2-羟基-dATP(2-OH-dATP)和8-羟基-dATP(8-OH-dATP),但不能水解(R)-8,5'-环-dATP、5-羟基-dCTP和5-甲酰基-dUTP。动力学参数表明,2-OH-dATP比8-OH-dGTP水解效率更高且亲和力更强。8-OH-dATP与8-OH-dGTP水解效率相同。在所有测试的pH值(pH 7.2至pH 8.8)下均观察到2-OH-dATP比8-OH-dGTP优先水解。特别是在pH 7.2时,发现2-OH-dATP与8-OH-dGTP的水解效率相差5倍。然而,大肠杆菌MutT对2-OH-dATP或8-OH-dATP均无水解活性。因此,大肠杆菌MutT并非hMTH1的完美对应物。此外,我们发现2-羟基-dADP和8-羟基-dGDP竞争性抑制hMTH1的2-OH-dATP水解酶和8-OH-dGTP水解酶活性。2-羟基-dADP的抑制作用比8-羟基-dGDP强3倍。这些结果表明,这三种受损核苷酸共享hMTH1的相同识别位点,并且它是一种比目前预期更重要的净化酶。

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