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乳腺癌耐药蛋白(ABCG2)和P-糖蛋白(ABCB1)对Allocrite的感知与结合

Allocrite Sensing and Binding by the Breast Cancer Resistance Protein (ABCG2) and P-Glycoprotein (ABCB1).

作者信息

Xu Yanyan, Egido Estefanía, Li-Blatter Xiaochun, Müller Rita, Merino Gracia, Bernèche Simon, Seelig Anna

机构信息

University of Basel, Biozentrum , Klingelbergstrasse 50/70, CH-4056 Basel, Switzerland.

SIB Swiss Institute of Bioinformatics , Klingelbergstrasse 61, CH-4056 Basel, Switzerland.

出版信息

Biochemistry. 2015 Oct 13;54(40):6195-206. doi: 10.1021/acs.biochem.5b00649. Epub 2015 Sep 29.

Abstract

The ATP binding cassette (ABC) transporters ABCG2 and ABCB1 perform ATP hydrolysis-dependent efflux of structurally highly diverse compounds, collectively called allocrites. Whereas much is known about allocrite-ABCB1 interactions, the chemical nature and strength of ABCG2-allocrite interactions have not yet been assessed. We quantified and characterized interactions of allocrite with ABCG2 and ABCB1 using a set of 39 diverse compounds. We also investigated potential allocrite binding sites based on available transporter structures and structural models. We demonstrate that ABCG2 binds its allocrites from the lipid membrane, despite their hydrophilicity. Hence, binding of allocrite to both transporters is a two-step process, starting with a lipid-water partitioning step, driven mainly by hydrophobic interactions, followed by a transporter binding step in the lipid membrane. We show that binding of allocrite to both transporters increases with the number of hydrogen bond acceptors in allocrites. Scrutinizing the transporter translocation pathways revealed ample hydrogen bond donors for allocrite binding. Importantly, the hydrogen bond donor strength is, on average, higher in ABCG2 than in ABCB1, which explains the higher measured affinity of allocrite for ABCG2. π-π stacking and π-cation interactions play additional roles in binding of allocrite to ABCG2 and ABCB1. With this analysis, we demonstrate that these membrane-mediated weak electrostatic interactions between transporters and allocrites allow for transporter promiscuity toward allocrites. The different sensitivities of the transporters to allocrites' charge and amphiphilicity provide transporter specificity. In addition, we show that the different hydrogen bond donor strengths in the two transporters allow for affinity tuning.

摘要

ATP结合盒(ABC)转运蛋白ABCG2和ABCB1可进行依赖ATP水解的外排作用,排出结构高度多样的化合物,这些化合物统称为配体。虽然关于配体与ABCB1的相互作用已有很多了解,但ABCG2与配体相互作用的化学性质和强度尚未得到评估。我们使用一组39种不同的化合物对配体与ABCG2和ABCB1的相互作用进行了定量和表征。我们还基于现有的转运蛋白结构和结构模型研究了潜在的配体结合位点。我们证明,尽管配体具有亲水性,但ABCG2仍从脂膜中结合其配体。因此,配体与这两种转运蛋白的结合是一个两步过程,首先是脂-水分配步骤,主要由疏水相互作用驱动,随后是在脂膜中的转运蛋白结合步骤。我们表明,配体与这两种转运蛋白的结合随着配体中氢键受体数量的增加而增加。仔细研究转运蛋白的转运途径发现有大量的氢键供体用于配体结合。重要的是,ABCG2中氢键供体的强度平均高于ABCB1,这解释了配体对ABCG2的测量亲和力更高的原因。π-π堆积和π-阳离子相互作用在配体与ABCG2和ABCB1的结合中起额外作用。通过这项分析,我们证明了转运蛋白与配体之间这些膜介导的弱静电相互作用允许转运蛋白对配体具有 promiscuity(此处可能有误,可结合上下文确定准确含义)。转运蛋白对配体电荷和两亲性的不同敏感性提供了转运蛋白特异性。此外,我们表明两种转运蛋白中不同的氢键供体强度允许进行亲和力调节。

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