首页> 外文期刊>Journal of Molecular Biology >Unusual role of a cysteine residue in substrate binding and activity of human AP-endonuclease 1.
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Unusual role of a cysteine residue in substrate binding and activity of human AP-endonuclease 1.

机译:半胱氨酸残基在人类AP核酸内切酶1的底物结合和活性中的异常作用。

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摘要

The mammalian AP-endonuclease (APE1) repairs apurinic/apyrimidinic (AP) sites and strand breaks with 3' blocks in the genome that are formed both endogenously and as intermediates during base excision repair. APE1 has an unrelated activity as a redox activator (and named Ref-1) for several trans-acting factors. In order to identify whether any of the seven cysteine residues in human APE1 affects its enzymatic function, we substituted these singly or multiply with serine. The repair activity is not affected in any of the mutants except those with C99S mutation. The Ser99-containing mutant lost affinity for DNA and its activity was inhibited by 10 mM Mg(2+). However, the Ser99 mutant has normal activity in 2 mM Mg(2+). Using crystallographic data and molecular dynamics simulation, we have provided a mechanistic basis for the altered properties of the C99S mutant. We earlier predicted that Mg(2+), with potential binding sites A and B, binds at the B site of wild-type APE1-substrate complex and moves to the A site after cleavage occurs, as observed in the crystal structure. The APE1-substrate complex is stabilized by a H bond between His309 and the AP site. We now show that this bond is broken to destabilize the complex in the absence of the Mg(2+). This effect due to the mutation of Cys99, approximately 16 A from the active site, on the DNA binding and activity is surprising. Mg(2+) at the B site promotes stabilization of the C99S mutant complex. At higher Mg(2+) concentration the A site is also filled, causing the B-site Mg(2+) to shift together with the AP site. At the same time, the H bond between His309 and the AP site shifts toward the 5' site of DNA. These shifts could explain the lower activity of the C99S mutant at higher [Mg(2+)]. The unexpected involvement of Cys99 in APE1's substrate binding and catalysis provides an example of involvement of a residue far from the active site.
机译:哺乳动物AP核酸内切酶(APE1)修复嘌呤/嘧啶(AP)位点和基因组中带有3'嵌段的链断裂,这些断裂既是内源性的,又是碱基切除修复过程中的中间体。对于几种反式作用因子,APE1作为氧化还原激活剂(并称为Ref-1)具有无关的活性。为了确定人APE1中的七个半胱氨酸残基中的任何一个是否影响其酶促功能,我们将它们单独取代或与丝氨酸取代。除具有C99S突变的那些突变体外,其他任何突变体的修复活性均不受影响。含Ser99的突变体失去了对DNA的亲和力,其活性被10 mM Mg(2+)抑制。但是,Ser99突变体在2 mM Mg(2+)中具有正常的活动。使用晶体学数据和分子动力学模拟,我们为C99S突变体的性质改变提供了机理基础。我们较早地预测,具有潜在结合位点A和B的Mg(2+)在野生型APE1-底物复合物的B位点结合,并在裂解发生后移至A位点,如在晶体结构中观察到的。 APE1底物复合物通过His309和AP位点之间的H键稳定。现在我们显示,在没有Mg(2+)的情况下,该键被破坏以使复合物不稳定。由于Cys99的突变(距活性位点约16 A),对DNA结合和活性的影响是令人惊讶的。在B位的Mg(2+)促进C99S突变体复合物的稳定。在较高的Mg(2+)浓度下,A位置也被填充,导致B位置的Mg(2+)与AP位置一起移动。同时,His309和AP位点之间的H键移向DNA的5'位。这些变化可以解释C99S突变体在较高的[Mg(2+)]下的较低活性。 Cys99意外参与APE1的底物结合和催化,提供了一个远离活性位点的残基参与的例子。

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