Identification and characterisation of putative drug binding sites in human ATP-binding cassette B5 (ABCB5) transporter

被引:9
作者
Tangella, Lokeswari P. [1 ]
Arooj, Mahreen [2 ]
Deplazes, Evelyne [3 ,4 ,5 ]
Gray, Elin S. [1 ]
Mancera, Ricardo L. [3 ,4 ]
机构
[1] Edith Cowan Univ, Sch Med & Hlth Sci, Perth, WA 6027, Australia
[2] Univ Sharjah, Dept Chem, Coll Sci, Sharjah 27272, U Arab Emirates
[3] Curtin Univ, Curtin Hlth Innovat Res Inst, Sch Pharm & Biomed Sci, GPO Box U1987, Perth, WA 6845, Australia
[4] Curtin Univ, Curtin Inst Computat, GPO Box U1987, Perth, WA 6845, Australia
[5] Univ Technol Sydney, Sch Life Sci, Ultimo, NSW 2007, Australia
关键词
Molecular modelling; Full-length ABCB5 transporter; Molecular dynamics simulations; Molecular docking; ABC transporter; HUMAN P-GLYCOPROTEIN; MULTIDRUG-RESISTANCE; MOLECULAR-DYNAMICS; LINKER REGION; EXPRESSION; MEMBRANE; DOCKING; SIMULATION; SUBSTRATE; MODELS;
D O I
10.1016/j.csbj.2020.12.042
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The human ATP-binding cassette B5 (ABCB5) transporter, a member of the ABC transporter superfamily, is linked to chemoresistance in tumour cells by drug effluxion. However, little is known about its structure and drug-binding sites. In this study, we generated an atomistic model of the full-length human ABCB5 transporter with the highest quality using the X-ray crystal structure of mouse ABCB1 (Pgp1), a close homologue of ABCB5 and a well-studied member of the ABC family. Molecular dynamics simulations were used to validate the atomistic model of ABCB5 and characterise its structural properties in model cell membranes. Molecular docking simulations of known ABCB5 substrates such as taxanes, anthracyclines, camptothecin and etoposide were then used to identify at least three putative binding sites for chemotherapeutic drugs transported by ABCB5. The location of these three binding sites is predicted to overlap with the corresponding binding sites in Pgp1. These findings will serve as the basis for future in vitro studies to validate the nature of the identified substrate-binding sites in the full-length ABCB5 transporter. (C) 2020 The Author(s). Published by Elsevier B.V. on behalf of Research Network of Computational and Structural Biotechnology.
引用
收藏
页码:691 / 704
页数:14
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