首页> 外文期刊>Nucleic Acids Research >Substitution of Asp-210 in HAP1 (APE/Ref-1) eliminates endonuclease activity but stabilises substrate binding.
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Substitution of Asp-210 in HAP1 (APE/Ref-1) eliminates endonuclease activity but stabilises substrate binding.

机译:在HAP1(APE / Ref-1)中替代Asp-210可消除核酸内切酶活性,但可稳定底物结合。

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摘要

HAP1, also known as APE/Ref-1, is the major apurinic/apyrimidinic (AP) endonuclease in human cells. Previous structural studies have suggested a possible role for the Asp-210 residue of HAP1 in the enzymatic function of this enzyme. Here, we demonstrate that substitution of Asp-210 by Asn or Ala eliminates the AP endonuclease activity of HAP1, while substitution by Glu reduces specific activity approximately 500-fold. Nevertheless, these mutant proteins still bind efficiently to oligonucleotides containing either AP sites or the chemically unrelated bulky p-benzoquinone (pBQ) derivatives of dC, dA and dG, all of which are substrates for HAP1. These results indicate that Asp-210 is required for catalysis, but not substrate recognition, consistent with enzyme kinetic data indicating that the HAP1-D210E protein has a 3000-fold reduced K(cat )for AP site cleavage, but an unchanged K(m). Through analysis of the binding of Asp-210 substitution mutants to oligonucleotides containing either an AP site or a pBQ adduct, we conclude that the absence of Asp-210 allows the formation of a stable HAP1-substrate complex that exists only transiently during the catalytic cycle of wild-type HAP1 protein. We interpret these data in the context of the structure of the HAP1 active site and the recently determined co-crystal structure of HAP1 bound to DNA substrates.
机译:HAP1,也称为APE / Ref-1,是人类细胞中主要的嘌呤/嘧啶(AP)核酸内切酶。先前的结构研究表明,HAP1的Asp-210残基可能在该酶的酶功能中起作用。在这里,我们证明Asn或Ala取代Asp-210消除了HAP1的AP核酸内切酶活性,而Glu取代则降低了约500倍的比活性。尽管如此,这些突变蛋白仍然可以有效地与含有AP位点或dC,dA和dG的化学无关的大体积对苯醌(pBQ)衍生物的寡核苷酸有效结合,所有这些都是HAP1的底物。这些结果表明,Asp-210是催化所必需的,而不是底物识别,与酶动力学数据一致,表明HAP1-D210E蛋白的AP位点裂解的K(cat)降低了3000倍,但K(m)不变)。通过分析Asp-210替代突变体与包含AP位点或pBQ加合物的寡核苷酸的结合,我们得出结论,Asp-210的缺失允许形成稳定的HAP1底物复合物,该复合物仅在催化循环中短暂存在型HAP1蛋白的表达。我们在HAP1活性位点的结构和最近确定的HAP1与DNA底物结合的共晶体结构的背景下解释这些数据。

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