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首页> 外文期刊>Biochemistry >High-Resolution Crystal Structures Reveal Plasticity in the Metal Binding Site of Apurinic/Apyrimidinic Endonuclease I
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High-Resolution Crystal Structures Reveal Plasticity in the Metal Binding Site of Apurinic/Apyrimidinic Endonuclease I

机译:高分辨率的晶体结构揭示了在尖锐的/嘧啶核糖核酸内切酶I的金属结合位点的可塑性。

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Apurinic/apyrimidinic endonuclease I (APE1) is an essential base excision repair enzyme that catalyzes a Mg~(2+)-dependent reaction in which the phosphodiester backbone is cleaved 5′ of an abasic site in duplex DNA. This reaction has been proposed to involve either one or two metal ions bound to the active site. In the present study, we report crystal structures of Mg~(2+), Mn~(2+), and apo-APE1 determined at 1.4, 2.2, and 1.65 ?, respectively, representing two of the highest resolution structures yet reported for APE1. In our structures, a single well-ordered Mn~(2+) ion was observed coordinated by D70 and E96; the Mg~(2+) site exhibited disorder modeled as two closely positioned sites coordinated by D70 and E96 or E96 alone. Direct metal binding analysis of wild-type, D70A, and E96A APE1, as assessed by differential scanning fluorimetry, indicated a role for D70 and E96 in binding of Mg~(2+) or Mn~(2+) to APE1. Consistent with the disorder exhibited by Mg~(2+) bound to the active site, two different conformations of E96 were observed coordinated to Mg~(2+). A third conformation for E96 in the apo structure is similar to that observed in the APE1-DNA-Mg~(2+) complex structure. Thus, binding of Mg~(2+) in three different positions within the active site of APE1 in these crystal structures corresponds directly with three different conformations of E96. Taken together, our results are consistent with the initial capture of metal by D70 and E96 and repositioning of Mg~(2+) facilitated by the structural plasticity of E96 in the active site.
机译:apurinic / apyrimidinic核酸内切酶I(APE1)是必不可少的碱基切除修复酶,可催化Mg〜(2+)依赖性反应,其中磷酸二酯主链在双链DNA的无碱基位点5'处裂解。已经提出该反应涉及结合至活性位点的一个或两个金属离子。在本研究中,我们报告了分别在1.4、2.2和1.65?下测定的Mg〜(2 +),Mn〜(2+)和apo-APE1的晶体结构,代表了迄今为止报道的两种最高分辨率的结构。 APE1。在我们的结构中,观察到由D70和E96配位的单个有序的Mn〜(2+)离子。 Mg〜(2+)位点表现出无序状态,建模为两个靠D70和E96或E96单独协调定位的位点。通过差示扫描荧光法评估,对野生型,D70A和E96A APE1的直接金属结合分析表明,D70和E96在Mg〜(2+)或Mn〜(2+)与APE1的结合中起作用。与结合到活性位点上的Mg〜(2+)表现出的疾病一致,观察到两个不同的E96构象与Mg〜(2+)配位。载脂蛋白结构中E96的第三个构象与APE1-DNA-Mg〜(2+)复杂结构中观察到的相似。因此,在这些晶体结构中,APE1活性位点内三个不同位置的Mg〜(2+)结合直接对应于E96的三个不同构象。两者合计,我们的结果与D70和E96对金属的最初捕获以及E96在活性位点的结构可塑性促进的Mg〜(2+)的重新定位是一致的。

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