Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2013 Aug 13;110(33):13386-91. doi: 10.1073/pnas.1309275110. Epub 2013 Jul 30.
P-glycoprotein (P-gp) is one of the best-known mediators of drug efflux-based multidrug resistance in many cancers. This validated therapeutic target is a prototypic, plasma membrane resident ATP-Binding Cassette transporter that pumps xenobiotic compounds out of cells. The large, polyspecific drug-binding pocket of P-gp recognizes a variety of structurally unrelated compounds. The transport of these drugs across the membrane is coincident with changes in the size and shape of this pocket during the course of the transport cycle. Here, we present the crystal structures of three inward-facing conformations of mouse P-gp derived from two different crystal forms. One structure has a nanobody bound to the C-terminal side of the first nucleotide-binding domain. This nanobody strongly inhibits the ATP hydrolysis activity of mouse P-gp by hindering the formation of a dimeric complex between the ATP-binding domains, which is essential for nucleotide hydrolysis. Together, these inward-facing conformational snapshots of P-gp demonstrate a range of flexibility exhibited by this transporter, which is likely an essential feature for the binding and transport of large, diverse substrates. The nanobody-bound structure also reveals a unique epitope on P-gp.
P-糖蛋白(P-gp)是许多癌症中基于药物外排的多药耐药性的最著名的介导者之一。这个经过验证的治疗靶点是一种典型的、位于质膜上的 ATP 结合盒转运体,能够将外源性化合物泵出细胞。P-gp 的大、多特异性药物结合口袋识别各种结构上无关的化合物。这些药物在穿过膜的运输过程中与该口袋的大小和形状的变化同时发生。在这里,我们展示了源自两种不同晶体形式的三种内向构象的小鼠 P-gp 的晶体结构。一个结构与第一个核苷酸结合域的 C 末端侧结合了一个纳米体。这个纳米体通过阻碍 ATP 结合域之间形成二聚体复合物来强烈抑制小鼠 P-gp 的 ATP 水解活性,这对于核苷酸水解是必不可少的。这些 P-gp 的内向构象快照一起展示了该转运体所表现出的一系列灵活性,这对于结合和运输大型、多样化的底物可能是一个重要特征。纳米体结合结构还揭示了 P-gp 上的一个独特表位。