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导向分子动力学模拟揭示伊马替尼与其靶向激酶 c-Kit 和 Abl 更可能的解离途径。

Steered molecular dynamics simulations reveal the likelier dissociation pathway of imatinib from its targeting kinases c-Kit and Abl.

机构信息

State Key Laboratory of Biotherapy and Cancer Center, West China Medical School, Sichuan University, West China Hospital, Chengdu, People's Republic of China.

出版信息

PLoS One. 2009 Dec 24;4(12):e8470. doi: 10.1371/journal.pone.0008470.

Abstract

Development of small molecular kinase inhibitors has recently been the central focus in drug discovery. And type II kinase inhibitors that target inactive conformation of kinases have attracted particular attention since their potency and selectivity are thought to be easier to achieve compared with their counterpart type I inhibitors that target active conformation of kinases. Although mechanisms underlying the interactions between type II inhibitors and their targeting kinases have been widely studied, there are still some challenging problems, for example, how type II inhibitors associate with or dissociate from their targeting kinases. In this investigation, steered molecular dynamics simulations have been carried out to explore the possible dissociation pathways of typical type II inhibitor imatinib from its targeting protein kinases c-Kit and Abl. The simulation results indicate that the most favorable pathway for imatinib dissociation corresponds to the ATP-channel rather than the relatively wider allosteric-pocket-channel, which is mainly due to the different van der Waals interaction that the ligand suffers during dissociation. Nevertheless, the direct reason comes from the fact that the residues composing the ATP-channel are more flexible than that forming the allosteric-pocket-channel. The present investigation suggests that a bulky hydrophobic head is unfavorable, but a large polar tail is allowed for a potent type II inhibitor. The information obtained here can be used to direct the discovery of type II kinase inhibitors.

摘要

小分子激酶抑制剂的研发最近成为药物研发的核心焦点。与靶向激酶活性构象的 I 型激酶抑制剂相比,靶向激酶无活性构象的 II 型激酶抑制剂因其效力和选择性更容易实现而受到特别关注。尽管已经广泛研究了 II 型抑制剂与其靶向激酶之间相互作用的机制,但仍存在一些具有挑战性的问题,例如,II 型抑制剂如何与靶向激酶结合或解离。在这项研究中,进行了导向分子动力学模拟,以探索典型的 II 型抑制剂伊马替尼与其靶向蛋白激酶 c-Kit 和 Abl 之间可能的解离途径。模拟结果表明,伊马替尼解离的最有利途径对应于 ATP 通道,而不是相对较宽的变构口袋通道,这主要是由于配体在解离过程中受到不同的范德华相互作用。然而,直接原因来自于组成 ATP 通道的残基比形成变构口袋通道的残基更灵活。本研究表明,大的疏水头是不利的,但大的极性尾部允许产生有效的 II 型抑制剂。这里获得的信息可用于指导 II 型激酶抑制剂的发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d59/2795779/51853c8f23f6/pone.0008470.g001.jpg

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