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探索人 P-糖蛋白构象重排中的运动和能量。

Exploring movement and energy in human P-glycoprotein conformational rearrangement.

机构信息

a College of Life Science and Bioengineering , Beijing University of Technology , Beijing , 100124 , China.

b Key Laboratory of Molecular Biophysics of the Ministry of Education, School of Life Science and Technology , Huazhong University of Science and Technology , Wuhan , Hubei , 430074 , China.

出版信息

J Biomol Struct Dyn. 2019 Mar;37(5):1104-1119. doi: 10.1080/07391102.2018.1461133. Epub 2018 Apr 24.

Abstract

Human P-glycoprotein (P-gp), a kind of ATP-Binding Cassette transporter, can export a diverse variety of anti-cancer drugs out of the tumor cell. Its overexpression is one of the main reasons for the multidrug resistance (MDR) of tumor cells. It has been confirmed that during the substrate transport process, P-gp experiences a large-scale structural rearrangement from the inward- to outward-facing states. However, the mechanism of how the nucleotide-binding domains (NBDs) control the transmembrane domains (TMDs) to open towards the periplasm in the outward-facing state has not yet been fully characterized. Herein, targeted molecular dynamics simulations were performed to explore the conformational rearrangement of human P-gp. The results show that the allosteric process proceeds in a coupled way, and first the transition is driven by the NBDs, and then transmitted to the cytoplasmic parts of TMDs, finally to the periplasmic parts. The trajectories show that besides the translational motions, the NBDs undergo a rotation movement, which mainly occurs in xy plane and ensures the formation of the correct ATP-binding pockets. The analyses on the interaction energies between the six structure segments (cICLs) from the TMDs and NBDs reveal that their subtle energy differences play an important role in causing the periplasmic parts of the transmembrane helices to separate from each other in the established directions and in appropriate amplitudes. This conclusion can explain the two experimental phenomena about human P-gp in some extent. These studies have provided a detailed exploration into human P-gp rearrangement process and given an energy insight into the TMD reorientation during P-gp transition.

摘要

人 P-糖蛋白(P-gp),一种 ATP 结合盒转运体,可以将多种抗癌药物从肿瘤细胞内排出。其过度表达是肿瘤细胞多药耐药(MDR)的主要原因之一。已经证实,在底物转运过程中,P-gp 经历了从内向到外向构象的大规模结构重排。然而,核苷酸结合域(NBDs)如何控制跨膜域(TMDs)在外向构象中向周质打开的机制尚未完全阐明。在此,进行了靶向分子动力学模拟,以探索人 P-gp 的构象重排。结果表明,别构过程以偶联的方式进行,首先由 NBDs 驱动,然后传递到 TMD 的细胞质部分,最后传递到周质部分。轨迹表明,除了平移运动外,NBDs 还会发生旋转运动,主要发生在 xy 平面上,以确保正确的 ATP 结合口袋的形成。对来自 TMDs 和 NBDs 的六个结构片段(cICLs)之间相互作用能的分析表明,它们的细微能量差异在导致跨膜螺旋的周质部分在建立的方向上以适当的幅度彼此分离方面起着重要作用。这一结论在一定程度上可以解释关于人 P-gp 的两个实验现象。这些研究对人 P-gp 的重排过程进行了详细的探索,并为 P-gp 转变过程中 TMD 重定向提供了能量见解。

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