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解析 I 组金属离子抑制 GSK3β 的差异:计算研究。

Dissection of the difference between the group I metal ions in inhibiting GSK3β: a computational study.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, China.

出版信息

Phys Chem Chem Phys. 2011 Apr 21;13(15):7014-23. doi: 10.1039/c0cp02498h. Epub 2011 Mar 14.

Abstract

Glycogen synthase kinase 3β (GSK3β) is a serine/threonine kinase that requires two cofactor Mg(2+) ions for catalysis in regulating many important cellular signals. Experimentally, Li(+) is a competitive inhibitor of GSK3β relative to Mg(2+), while this mechanism is not experienced with other group I metal ions. Herein, we use native Mg(2)(2+)-Mg(1)(2+) GSK3β and its Mg(2)(2+)-M(1)(+) (M = Li, Na, K, and Rb) derivatives to investigate the effect of metal ion substitution on the mechanism of inhibition through two-layer ONIOM-based quantum mechanics/molecular mechanics (QM/MM) calculations and molecular dynamics (MD) simulations. The results of ONIOM calculations elucidate that the interaction of Na(+), K(+), and Rb(+) with ATP is weaker compared to that of Mg(2+) and Li(+) with ATP, and the critical triphosphate moiety of ATP undergoes a large conformational change in the Na(+), K(+), and Rb(+) substituted systems. As a result, the three metal ions (Na(+), K(+), and Rb(+)) are not stable and depart from the active site, while Mg(2+) and Li(+) can stabilize in the active site, evident in MD simulations. Comparisons of Mg(2)(2+)-Mg(1)(2+) and Mg(2)(2+)-Li(1)(+) systems reveal that the inline phosphor-transfer of ATP and the two conserved hydrogen bonds between Lys85 and ATP, together with the electrostatic potential at the Li(1)(+) site, are disrupted in the Mg(2)(2+)-Li(1)(+) system. These computational results highlight the possible mechanism why Li(+) inhibits GSK3β.

摘要

糖原合酶激酶 3β(GSK3β)是一种丝氨酸/苏氨酸激酶,在调节许多重要细胞信号中,需要两个辅助因子 Mg(2+) 离子进行催化。实验上,Li(+)相对于 Mg(2+)是 GSK3β 的竞争性抑制剂,但这种机制不适用于其他 I 族金属离子。在此,我们使用天然的 Mg(2)(2+)-Mg(1)(2+)GSK3β及其 Mg(2)(2+)-M(1)(+)(M = Li、Na、K 和 Rb)衍生物,通过两层基于 ONIOM 的量子力学/分子力学(QM/MM)计算和分子动力学(MD)模拟,研究金属离子取代对抑制机制的影响。ONIOM 计算结果表明,与 Mg(2+)和 Li(+)相比,Na(+)、K(+)和 Rb(+)与 ATP 的相互作用较弱,并且 ATP 的关键三磷酸部分在 Na(+)、K(+)和 Rb(+)取代体系中发生了较大的构象变化。因此,这三种金属离子(Na(+)、K(+)和 Rb(+))不稳定并从活性位点中脱离,而 Mg(2+)和 Li(+)则可以在活性位点中稳定存在,这在 MD 模拟中得到了证实。Mg(2)(2+)-Mg(1)(2+)和 Mg(2)(2+)-Li(1)(+)系统的比较表明,ATP 的 inline 磷转移和 Lys85 与 ATP 之间的两个保守氢键,以及 Li(1)(+)位的静电势,在 Mg(2)(2+)-Li(1)(+)系统中被破坏。这些计算结果突出了 Li(+)抑制 GSK3β 的可能机制。

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