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大肠杆菌尿嘧啶-DNA糖基化酶活性位点残基的突变:对DNA结合、尿嘧啶抑制及催化作用的影响。

Mutation of an active site residue in Escherichia coli uracil-DNA glycosylase: effect on DNA binding, uracil inhibition and catalysis.

作者信息

Shroyer M J, Bennett S E, Putnam C D, Tainer J A, Mosbaugh D W

机构信息

Departments of Microbiology, Environmental and Molecular Toxicology, Biochemistry and Biophysics, and the Environmental Health Science Center, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Biochemistry. 1999 Apr 13;38(15):4834-45. doi: 10.1021/bi982986j.

Abstract

The role of the conserved histidine-187 located in the leucine intercalation loop of Escherichia coli uracil-DNA glycosylase (Ung) was investigated. Using site-directed mutagenesis, an Ung H187D mutant protein was created, overproduced, purified to apparent homogeneity, and characterized in comparison to wild-type Ung. The properties of Ung H187D differed from Ung with respect to specific activity, substrate specificity, DNA binding, pH optimum, and inhibition by uracil analogues. Ung H187D exhibited a 55000-fold lower specific activity and a shift in pH optimum from pH 8.0 to 7.0. Under reaction conditions optimal for wild-type Ung (pH 8.0), the substrate preference of Ung H187D on defined single- and double-stranded oligonucleotides (25-mers) containing a site-specific uracil target was U/G-25-mer > U-25-mer > U/A-25-mer. However, Ung H187D processed these same DNA substrates at comparable rates at pH 7.0 and the activity was stimulated approximately 3-fold relative to the U-25-mer substrate. Ung H187D was less susceptible than Ung to inhibition by uracil, 6-amino uracil, and 5-fluorouracil. Using UV-catalyzed protein/DNA cross-linking to measure DNA binding affinity, the efficiency of Ung H187D binding to thymine-, uracil-, and apyrimidinic-site-containing DNA was (dT20) = (dT19-U) >/= (dT19-AP). Comparative analysis of the biochemical properties and the X-ray crystallographic structures of Ung and Ung H187D [Putnam, C. D., Shroyer, M. J. N., Lundquist, A. J., Mol, C. D., Arvai, A. S., Mosbaugh, D. W., and Tainer, J. A. (1999) J. Mol. Biol. 287, 331-346] provided insight regarding the role of His-187 in the catalytic mechanism of glycosylic bond cleavage. A novel mechanism is proposed wherein the developing negative charge on the uracil ring and concomitant polarization of the N1-C1' bond is sustained by resonance effects and hydrogen bonding involving the imidazole side chain of His-187.

摘要

研究了位于大肠杆菌尿嘧啶-DNA糖基化酶(Ung)亮氨酸插入环中的保守组氨酸-187的作用。通过定点诱变,构建了Ung H187D突变蛋白,大量表达,纯化至表观均一,并与野生型Ung进行比较表征。Ung H187D在比活性、底物特异性、DNA结合、最适pH值和尿嘧啶类似物抑制方面的性质与Ung不同。Ung H187D的比活性降低了55000倍,最适pH值从pH 8.0变为7.0。在野生型Ung的最佳反应条件(pH 8.0)下,Ung H187D对含有位点特异性尿嘧啶靶标的特定单链和双链寡核苷酸(25聚体)的底物偏好为U/G-25聚体>U-25聚体>U/A-25聚体。然而,Ung H187D在pH 7.0时以相当的速率处理这些相同的DNA底物,并且相对于U-25聚体底物,活性被刺激了约3倍。Ung H187D比Ung对尿嘧啶、6-氨基尿嘧啶和5-氟尿嘧啶的抑制更不敏感。使用紫外线催化的蛋白质/DNA交联来测量DNA结合亲和力,Ung H187D与含胸腺嘧啶、尿嘧啶和无嘧啶位点的DNA结合的效率为(dT20) = (dT19-U) ≥ (dT19-AP)。对Ung和Ung H187D的生化性质和X射线晶体结构的比较分析[普特南,C.D.,施罗耶,M.J.N.,伦德奎斯特,A.J.,莫尔,C.D.,阿尔瓦伊,A.S.,莫斯博,D.W.,和泰纳,J.A.(1999年)《分子生物学杂志》287,331 - 346]提供了关于His-187在糖苷键裂解催化机制中作用的见解。提出了一种新机制,其中尿嘧啶环上发展的负电荷和N1-C1'键的伴随极化通过涉及His-187咪唑侧链的共振效应和氢键得以维持。

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