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人睾丸细胞相关激酶的计算机三维结构建模和抑制剂结合研究。

In silico 3D structure modeling and inhibitor binding studies of human male germ cell-associated kinase.

机构信息

a School of Chemistry , University of Hyderabad , Hyderabad 500046 , India.

出版信息

J Biomol Struct Dyn. 2015;33(8):1710-9. doi: 10.1080/07391102.2014.968622. Epub 2014 Oct 27.

Abstract

Human male germ cell-associated kinase (hMAK) is an androgen-inducible gene in prostate epithelial cells, and it acts as a coactivator of androgen receptor signaling in prostate cancer. The 3D structure of the hMAK kinase was modeled based on the crystal structure of CDK2 kinase using comparative modeling methods, and the ATP-binding site was characterized. We have collected five inhibitors of hMAK from the literature and docked into the ATP-binding site of the kinase domain. Solvated interaction energies (SIE) of inhibitor binding are calculated from the molecular dynamics simulations trajectories of protein-inhibitor complexes. The contribution from each active site residue in hMAK toward inhibitor binding revealed the nature and extent of interactions between inhibitors and individual residues. The main chain atoms of Met79 invariably form hydrogen bonds with all five inhibitors. The amino acids Leu7, Val15, and Leu129 stabilize the inhibitors via CH-pi interactions. The Asp140 in the active site and Glu77 in hinge region show characteristic hydrogen bonding interactions with inhibitors. From SIE, the residue-wise interactions revealed the nature of non-bonding contacts and modifications required to increase the inhibitor activity. Our work provides 3D model structure of hMAK and molecular basis for the mechanisms of hMAK inhibition at atomic level that aid in designing new potent inhibitors.

摘要

人类男性生殖细胞相关激酶(hMAK)是前列腺上皮细胞中雄激素诱导的基因,它作为前列腺癌中雄激素受体信号的共激活剂。使用比较建模方法,基于 CDK2 激酶的晶体结构对 hMAK 激酶的 3D 结构进行建模,并对 ATP 结合位点进行了特征描述。我们从文献中收集了五种 hMAK 的抑制剂,并将其对接入激酶结构域的 ATP 结合位点。从蛋白-抑制剂复合物的分子动力学模拟轨迹中计算抑制剂结合的溶剂化相互作用能(SIE)。hMAK 中每个活性位点残基对抑制剂结合的贡献揭示了抑制剂与单个残基之间相互作用的性质和程度。Met79 的主链原子始终与所有五种抑制剂形成氢键。Leu7、Val15 和 Leu129 氨基酸通过 CH-pi 相互作用稳定抑制剂。活性位点中的 Asp140 和铰链区域中的 Glu77 与抑制剂表现出特征性氢键相互作用。从 SIE 中,残基相互作用揭示了增加抑制剂活性所需的非键接触和修饰的性质。我们的工作提供了 hMAK 的 3D 模型结构和 hMAK 抑制的原子水平机制的分子基础,有助于设计新的有效抑制剂。

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