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大肠杆菌MutT蛋白磷酸水解酶模块中保守残基的功能意义

Functional significance of conserved residues in the phosphohydrolase module of Escherichia coli MutT protein.

作者信息

Shimokawa H, Fujii Y, Furuichi M, Sekiguchi M, Nakabeppu Y

机构信息

Department of Biology and Frontier Research Center, Fukuoka Dental College, Fukuoka 814-0193, Japan.

出版信息

Nucleic Acids Res. 2000 Sep 1;28(17):3240-9. doi: 10.1093/nar/28.17.3240.

Abstract

Escherichia coli MutT protein hydrolyzes 8-oxo-7,8-dihydro-2'-dGTP (8-oxo-dGTP) to the monophosphate, thus avoiding the incorporation of 8-oxo-7,8-dihydroguanine (8-oxo-G) into nascent DNA. Bacterial and mammalian homologs of MutT protein share the phosphohydrolase module (MutT: Gly37-->Gly59). By saturation mutagenesis of conserved residues in the MutT module, four of the 10 conserved residues (Gly37, Gly38, Glu53 and Glu57) were revealed to be essential to suppress spontaneous A:T-->C:G transversion mutation in a mutT(-) mutator strain. For the other six residues (Lys39, Glu44, Thr45, Arg52, Glu56 and Gly59), many positive mutants which can suppress the spontaneous mutation were obtained; however, all of the positive mutants for Glu44 and Arg52 either partially or inefficiently suppressed the mutation, indicating that these two residues are also important for MutT function. Several positive mutants for Lys39, Thr45, Glu56 and Gly59 efficiently decreased the elevated spontaneous mutation rate, as seen with the wild-type, hence, these four residues are non-essential for MutT function. As Lys38 and Glu55 in human MTH1, corresponding to the non-essential residues Lys39 and Glu56 in MutT, could not be replaced by any other residue without loss of function, different structural features between the two modules of MTH1 and MutT proteins are evident.

摘要

大肠杆菌MutT蛋白将8-氧代-7,8-二氢-2'-脱氧鸟苷三磷酸(8-氧代-dGTP)水解为单磷酸,从而避免8-氧代-7,8-二氢鸟嘌呤(8-氧代-G)掺入新生DNA中。MutT蛋白的细菌和哺乳动物同源物共享磷酸水解酶模块(MutT:Gly37-->Gly59)。通过对MutT模块中保守残基进行饱和诱变,发现10个保守残基中的4个(Gly37、Gly38、Glu53和Glu57)对于抑制mutT(-)突变菌株中的自发A:T-->C:G颠换突变至关重要。对于其他6个残基(Lys39、Glu44、Thr45、Arg52、Glu56和Gly59),获得了许多能够抑制自发突变的正向突变体;然而,Glu44和Arg52的所有正向突变体要么部分抑制要么低效抑制突变,表明这两个残基对MutT功能也很重要。Lys39、Thr45、Glu56和Gly59的几个正向突变体有效地降低了升高的自发突变率,如同野生型一样,因此,这四个残基对MutT功能并非必需。由于人类MTH1中的Lys38和Glu55对应于MutT中对功能非必需的残基Lys39和Glu56,在不丧失功能的情况下不能被任何其他残基取代,MTH1和MutT蛋白的两个模块之间明显存在不同的结构特征。

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