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核酸内切酶V内的半胱氨酸-78与金属的选择性结合会抑制催化活性,而不会改变非靶标和靶标DNA的结合。

Selective metal binding to Cys-78 within endonuclease V causes an inhibition of catalytic activities without altering nontarget and target DNA binding.

作者信息

Prince M A, Friedman B, Gruskin E A, Schrock R D, Lloyd R S

机构信息

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232.

出版信息

J Biol Chem. 1991 Jun 5;266(16):10686-93.

PMID:2037608
Abstract

T4 endonuclease V is a pyrimidine dimer-specific DNA repair enzyme which has been previously shown not to require metal ions for either of its two catalytic activities or its DNA binding function by virtue of its ability to function in the presence of metal-chelating agents. However, we have investigated whether the single cysteine within the enzyme was able to bind metal salts and influence the various activities of this repair enzyme. A series of metals (Hg2+, Ag+, Cu+) were shown to inactivate both endonuclease Vs pyrimidine dimer-specific DNA glycosylase activity and the subsequent apurinic nicking activity. The binding of metal to endonuclease V did not interfere with nontarget DNA scanning or pyrimidine dimer-specific binding. The Cys-78 codon within the endonuclease V gene was changed by oligonucleotide site-directed mutagenesis to Thr-78 and Ser-78 in order to determine whether the native cysteine was directly involved in the enzyme's DNA catalytic activities and whether the cysteine was primarily responsible for the metal binding. The mutant enzymes were able to confer enhanced ultraviolet light (UV) resistance to DNA repair-deficient Escherichia coli at levels equal to that conferred by the wild type enzyme. The C78T mutant enzyme was purified to homogeneity and shown to be catalytically active on pyrimidine dimer-containing DNA. The catalytic activities of the C78T mutant enzyme were demonstrated to be unaffected by the addition of Hg2+ or Ag+ at concentrations 1000-fold greater than that required to inhibit the wild type enzyme. These data suggest that the cysteine is not required for enzyme activity but that the binding of certain metals to that amino acid block DNA incision by either preventing a conformational change in the enzyme after it has bound to a pyrimidine dimer or sterically interfering with the active site residue's accessibility to the pyrimidine dimer.

摘要

T4 内切核酸酶 V 是一种嘧啶二聚体特异性 DNA 修复酶,此前研究表明,由于其在金属螯合剂存在的情况下仍能发挥作用,其两种催化活性及 DNA 结合功能均不需要金属离子。然而,我们研究了该酶内的单个半胱氨酸是否能够结合金属盐并影响这种修复酶的各种活性。结果表明,一系列金属(Hg2+、Ag+、Cu+)会使内切核酸酶 V 的嘧啶二聚体特异性 DNA 糖基化酶活性及随后的脱嘌呤切口活性失活。金属与内切核酸酶 V 的结合并不干扰非靶标 DNA 扫描或嘧啶二聚体特异性结合。通过寡核苷酸定点诱变将内切核酸酶 V 基因内的 Cys-78 密码子替换为 Thr-78 和 Ser-78,以确定天然半胱氨酸是否直接参与该酶的 DNA 催化活性,以及半胱氨酸是否主要负责金属结合。突变酶能够赋予 DNA 修复缺陷型大肠杆菌增强的紫外线(UV)抗性,其水平与野生型酶相当。C78T 突变酶被纯化至同质,并显示对含嘧啶二聚体的 DNA 具有催化活性。结果表明,C78T 突变酶的催化活性不受添加浓度比抑制野生型酶所需浓度高 1000 倍的 Hg2+或 Ag+的影响。这些数据表明,酶活性不需要半胱氨酸,但某些金属与该氨基酸的结合会通过阻止酶与嘧啶二聚体结合后的构象变化或在空间上干扰活性位点残基与嘧啶二聚体的接触来阻断 DNA 切割。

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