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ABCB1晶体结构证实的ABC转运蛋白同源模型的结合位点。

Binding site of ABC transporter homology models confirmed by ABCB1 crystal structure.

作者信息

Ravna Aina W, Sylte Ingebrigt, Sager Georg

机构信息

Department of Medical Pharmacology and Toxicology, Institute of Medical Biology, Faculty of Health Sciences, University of Tromsø, N-9037 Tromsø, Norway.

出版信息

Theor Biol Med Model. 2009 Sep 4;6:20. doi: 10.1186/1742-4682-6-20.

Abstract

The human ATP-binding cassette (ABC) transporters ABCB1, ABCC4 and ABCC5 are involved in resistance to chemotherapeutic agents. Here we present molecular models of ABCB1, ABCC4 and ABCC5 by homology based on a wide open inward-facing conformation of Escherichia coli MsbA, which were constructed in order to elucidate differences in the electrostatic and molecular features of their drug recognition conformations. As a quality assurance of the methodology, the ABCB1 model was compared to an ABCB1 X-ray crystal structure, and with published cross-linking and site directed mutagenesis data of ABCB1. Amino acids Ile306 (TMH5), Ile340 (TMH6), Phe343 (TMH6), Phe728 (TMH7), and Val982 (TMH12), form a putative substrate recognition site in the ABCB1 model, which is confirmed by both the ABCB1 X-ray crystal structure and the site-directed mutagenesis studies. The ABCB1, ABCC4 and ABCC5 models display distinct differences in the electrostatic properties of their drug recognition sites.

摘要

人类ATP结合盒(ABC)转运蛋白ABCB1、ABCC4和ABCC5与化疗药物耐药性有关。在此,我们基于大肠杆菌MsbA的一种广泛开放的向内构象,通过同源性构建了ABCB1、ABCC4和ABCC5的分子模型,构建这些模型是为了阐明它们药物识别构象的静电和分子特征差异。作为该方法的质量保证,将ABCB1模型与ABCB1的X射线晶体结构以及已发表的ABCB1交联和定点诱变数据进行了比较。在ABCB1模型中,氨基酸Ile306(跨膜螺旋5)、Ile340(跨膜螺旋6)、Phe343(跨膜螺旋6)、Phe728(跨膜螺旋7)和Val982(跨膜螺旋12)形成了一个假定的底物识别位点,这一点得到了ABCB1的X射线晶体结构和定点诱变研究的证实。ABCB1、ABCC4和ABCC5模型在其药物识别位点的静电性质上表现出明显差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50c2/2747915/42b0e5327b6e/1742-4682-6-20-1.jpg

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