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解析人类 P-糖蛋白构象传递的分子机制。

Molecular insight into conformational transmission of human P-glycoprotein.

机构信息

Department of Biochemical Engineering and Key Laboratory of Systems Bioengineering of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

出版信息

J Chem Phys. 2013 Dec 14;139(22):225102. doi: 10.1063/1.4832740.

Abstract

P-glycoprotein (P-gp), a kind of ATP-binding cassette transporter, can export candidates through a channel at the two transmembrane domains (TMDs) across the cell membranes using the energy released from ATP hydrolysis at the two nucleotide-binding domains (NBDs). Considerable evidence has indicated that human P-gp undergoes large-scale conformational changes to export a wide variety of anti-cancer drugs out of the cancer cells. However, molecular mechanism of the conformational transmission of human P-gp from the NBDs to the TMDs is still unclear. Herein, targeted molecular dynamics simulations were performed to explore the atomic detail of the conformational transmission of human P-gp. It is confirmed that the conformational transition from the inward- to outward-facing is initiated by the movement of the NBDs. It is found that the two NBDs move both on the two directions (x and y). The movement on the x direction leads to the closure of the NBDs, while the movement on the y direction adjusts the conformations of the NBDs to form the correct ATP binding pockets. Six key segments (KSs) protruding from the TMDs to interact with the NBDs are identified. The relative movement of the KSs along the y axis driven by the NBDs can be transmitted through α-helices to the rest of the TMDs, rendering the TMDs to open towards periplasm in the outward-facing conformation. Twenty eight key residue pairs are identified to participate in the interaction network that contributes to the conformational transmission from the NBDs to the TMDs of human P-gp. In addition, 9 key residues in each NBD are also identified. The studies have thus provided clear insight into the conformational transmission from the NBDs to the TMDs in human P-gp.

摘要

P-糖蛋白(P-gp)是一种 ATP 结合盒转运蛋白,能够利用两个核苷酸结合域(NBDs)中 ATP 水解释放的能量,通过两个跨膜域(TMDs)中的通道将候选物输出到细胞外。大量证据表明,人 P-gp 会发生大规模构象变化,将各种抗癌药物从癌细胞中排出。然而,人 P-gp 从 NBD 到 TMD 的构象传递的分子机制仍不清楚。在此,我们进行了靶向分子动力学模拟,以探索人 P-gp 构象传递的原子细节。研究证实,从内向到外向的构象转变是由 NBD 的运动引发的。研究发现,两个 NBD 都在两个方向(x 和 y)上移动。x 方向的运动导致 NBD 关闭,而 y 方向的运动则调整 NBD 的构象,形成正确的 ATP 结合口袋。确定了从 TMD 突出以与 NBD 相互作用的六个关键片段(KS)。由 NBD 沿 y 轴驱动的 KS 的相对运动可以通过 α-螺旋传递到 TMD 的其余部分,使 TMD 在向外开放构象中朝向周质打开。确定了 28 对关键残基对参与有助于从 NBD 到人 P-gp 的 TMD 构象传递的相互作用网络。此外,还确定了每个 NBD 中的 9 个关键残基。因此,这些研究为人 P-gp 从 NBD 到 TMD 的构象传递提供了清晰的认识。

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