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基于 McMD 的动态对接模拟揭示了中型 Bcl-xL 抑制化合物的隐蔽结合位点机制。

Cryptic-site binding mechanism of medium-sized Bcl-xL inhibiting compounds elucidated by McMD-based dynamic docking simulations.

机构信息

Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.

Graduate School of Simulation Studies, University of Hyogo, 7-1-28 Minatojima Minami-machi, Chuo-ku, Kobe, Hyogo, 650-0047, Japan.

出版信息

Sci Rep. 2021 Mar 3;11(1):5046. doi: 10.1038/s41598-021-84488-z.

Abstract

We have performed multicanonical molecular dynamics (McMD) based dynamic docking simulations to study and compare the binding mechanism between two medium-sized inhibitors (ABT-737 and WEHI-539) that bind to the cryptic site of Bcl-xL, by exhaustively sampling the conformational and configurational space. Cryptic sites are binding pockets that are transiently formed in the apo state or are induced upon ligand binding. Bcl-xL, a pro-survival protein involved in cancer progression, is known to have a cryptic site, whereby the shape of the pocket depends on which ligand is bound to it. Starting from the apo-structure, we have performed two independent McMD-based dynamic docking simulations for each ligand, and were able to obtain near-native complex structures in both cases. In addition, we have also studied their interactions along their respective binding pathways by using path sampling simulations, which showed that the ligands form stable binding configurations via predominantly hydrophobic interactions. Although the protein started from the apo state, both ligands modulated the pocket in different ways, shifting the conformational preference of the sub-pockets of Bcl-xL. We demonstrate that McMD-based dynamic docking is a powerful tool that can be effectively used to study binding mechanisms involving a cryptic site, where ligand binding requires a large conformational change in the protein to occur.

摘要

我们进行了多正则分子动力学(McMD)为基础的动态对接模拟,以研究和比较两种中型抑制剂(ABT-737 和 WEHI-539)与 Bcl-xL 的隐匿结合位点的结合机制,通过详尽地采样构象和构象空间。隐匿结合位点是指在apo 状态下瞬时形成或在配体结合时诱导形成的结合口袋。Bcl-xL 是一种参与癌症进展的生存蛋白,已知具有隐匿结合位点,口袋的形状取决于与之结合的配体。从 apo 结构开始,我们为每个配体进行了两次独立的基于 McMD 的动态对接模拟,在两种情况下都能够获得接近天然的复合物结构。此外,我们还通过路径采样模拟研究了它们沿着各自结合途径的相互作用,结果表明配体通过主要的疏水相互作用形成稳定的结合构象。尽管蛋白质从 apo 状态开始,但两种配体以不同的方式调节口袋,改变了 Bcl-xL 亚口袋的构象偏好。我们证明基于 McMD 的动态对接是一种强大的工具,可以有效地用于研究涉及隐匿结合位点的结合机制,其中配体结合需要蛋白质发生大的构象变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e41a/7930018/049086084f7c/41598_2021_84488_Fig1_HTML.jpg

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