Departments of Chemistry and Biochemistry, University of Oxford, Oxford OX1 3QZ, United Kingdom.
Proc Natl Acad Sci U S A. 2013 Jun 11;110(24):9704-9. doi: 10.1073/pnas.1303888110. Epub 2013 May 20.
Multidrug resistance is a serious barrier to successful treatment of many human diseases, including cancer, wherein chemotherapeutics are exported from target cells by membrane-embedded pumps. The most prevalent of these pumps, the ATP-Binding Cassette transporter P-glycoprotein (P-gp), consists of two homologous halves each comprising one nucleotide-binding domain and six transmembrane helices. The transmembrane region encapsulates a hydrophobic cavity, accessed by portals in the membrane, that binds cytotoxic compounds as well as lipids and peptides. Here we use mass spectrometry (MS) to probe the intact P-gp small molecule-bound complex in a detergent micelle. Activation in the gas phase leads to formation of ions, largely devoid of detergent, yet retaining drug molecules as well as charged or zwitterionic lipids. Measuring the rates of lipid binding and calculating apparent KD values shows that up to six negatively charged diacylglycerides bind more favorably than zwitterionic lipids. Similar experiments confirm binding of cardiolipins and show that prior binding of the immunosuppressant and antifungal antibiotic cyclosporin A enhances subsequent binding of cardiolipin. Ion mobility MS reveals that P-gp exists in an equilibrium between different states, readily interconverted by ligand binding. Overall these MS results show how concerted small molecule binding leads to synergistic effects on binding affinities and conformations of a multidrug efflux pump.
多药耐药性是许多人类疾病(包括癌症)成功治疗的严重障碍,其中化疗药物通过膜嵌入泵从靶细胞中输出。这些泵中最常见的是 ATP 结合盒转运蛋白 P-糖蛋白(P-gp),它由两个同源的半部分组成,每个半部分包含一个核苷酸结合域和六个跨膜螺旋。跨膜区域包含一个疏水性腔,通过膜中的入口进入,该腔结合细胞毒性化合物以及脂质和肽。在这里,我们使用质谱(MS)在去污剂胶束中探测完整的 P-gp 小分子结合复合物。在气相中的激活导致形成离子,这些离子几乎不含去污剂,但保留药物分子以及带电或两性离子脂质。测量脂质结合的速率并计算表观 KD 值表明,多达六个带负电荷的二酰基甘油比两性离子脂质更有利于结合。类似的实验证实了心磷脂的结合,并表明免疫抑制剂和抗真菌抗生素环孢菌素 A 的先前结合增强了随后的心磷脂结合。离子淌度 MS 揭示了 P-gp 存在于不同状态之间的平衡中,通过配体结合可轻松相互转换。总体而言,这些 MS 结果表明,协同的小分子结合如何导致多药外排泵的结合亲和力和构象产生协同效应。