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硫辛酸的结合会诱导甲基乙二醛修饰的血清白蛋白发生构象变化并出现一个新的结合位点。

Binding of lipoic acid induces conformational change and appearance of a new binding site in methylglyoxal modified serum albumin.

作者信息

Suji George, Khedkar Santosh A, Singh Sreelekha K, Kishore Nand, Coutinho Evans C, Bhor Vikrant M, Sivakami S

机构信息

Department of Life Sciences, University of Mumbai, Santacruz (E), Mumbai 400098, India.

出版信息

Protein J. 2008 Jun;27(4):205-14. doi: 10.1007/s10930-008-9126-3.

Abstract

The binding of lipoic acid (LA), to methylglyoxal (MG) modified BSA was studied using isothermal titration calorimetry in combination with enzyme kinetics and molecular modelling. The binding of LA to BSA was sequential with two sites, one with higher binding constant and another comparatively lower. In contrast the modified protein showed three sequential binding sites with a reduction in affinity at the high affinity binding site by a factor of 10. CD results show appreciable changes in conformation of the modified protein as a result of binding to LA. The inhibition of esterase like activity of BSA by LA revealed that it binds to site II in domain III of BSA. The pH dependence of esterase activity of native BSA indicated a catalytic group with a pK(a) = 7.9 +/- 0.1, assigned to Tyr411 with the conjugate base stabilised by interaction with Arg410. Upon modification by MG, this pK(a) increased to 8.13. A complex obtained by docking of LA to BSA and BSA in which Arg410 is modified to hydroimidazolone showed that the long hydrocarbon chain of lipoic acid sits in a cavity different from the one observed for unmodified BSA. The molecular electrostatic potential showed that the modification of Arg410 reduced the positive electrostatic potential around the protein-binding site. Thus it can be concluded that the modification of BSA by MG resulted in altered ligand binding characteristics due to changes in the internal geometry and electrostatic potential at the binding site.

摘要

采用等温滴定量热法结合酶动力学和分子模拟研究了硫辛酸(LA)与甲基乙二醛(MG)修饰的牛血清白蛋白(BSA)的结合。LA与BSA的结合是分两步进行的,有两个结合位点,一个具有较高的结合常数,另一个相对较低。相比之下,修饰后的蛋白质显示出三个连续的结合位点,高亲和力结合位点的亲和力降低了10倍。圆二色光谱(CD)结果表明,由于与LA结合,修饰后蛋白质的构象发生了明显变化。LA对BSA酯酶样活性的抑制作用表明它结合在BSA结构域III的位点II上。天然BSA酯酶活性的pH依赖性表明存在一个pK(a)=7.9±0.1的催化基团,该基团归属于Tyr411,其共轭碱通过与Arg410相互作用而稳定。经MG修饰后,该pK(a)增加到8.13。通过将LA与BSA以及将Arg410修饰为氢咪唑酮的BSA进行对接得到的复合物表明,硫辛酸的长烃链位于一个与未修饰的BSA所观察到的不同的空腔中。分子静电势表明,Arg410的修饰降低了蛋白质结合位点周围的正静电势。因此可以得出结论,MG对BSA的修饰导致了配体结合特性的改变,这是由于结合位点内部几何结构和静电势的变化所致。

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