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The conformation and dynamics of P-glycoprotein in a lipid bilayer investigated by atomic force microscopy

机译:用原子力显微镜研究脂双层脂蛋白在脂质双层蛋白中的构象和动态

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摘要

The membrane-bound P-glycoprotein (Pgp) transporter plays a major role in human disease and drug disposition because of its ability to efflux a chemically diverse range of drugs through ATP hydrolysis and ligand-induced conformational changes. Deciphering these structural changes is key to understanding the molecular basis of transport and to developing molecules that can modulate efflux. Here, atomic force microscopy (AFM) is used to directly image individual Pgp transporter molecules in a lipid bilayer under physiological pH and ambient temperature. Analysis of the Pgp AFM images revealed “small” and “large” protrusions from the lipid bilayer with significant differences in protrusion height and volume. The geometry of these “small” and “large” protrusions correlated to the predicted extracellular (EC) and cytosolic (C) domains of the Pgp X-ray crystal structure, respectively. To assign these protrusions, simulated AFM images were produced from the Pgp X-ray crystal structures with membrane planes defined by three computational approaches, and a simulated 80?? AFM cantilever tip. The theoretical AFM images of the EC and C domains had similar heights and volumes to the “small” and “large” protrusions in the experimental AFM images, respectively. The assignment of the protrusions in the AFM images to the EC and C domains was confirmed by changes in protrusion volume by Pgp-specific antibodies. The Pgp domains showed a considerable degree of conformational dynamics in time resolved AFM images. With this information, a model of Pgp conformational dynamics in a lipid bilayer is proposed within the context of the known Pgp X-ray crystal structures.
机译:膜结合的p-糖蛋白(PGP)转运蛋白在人类疾病和药物处置中起主要作用,因为它能够通过ATP水解和配体诱导的构象变化进行化学多样化的药物。解密这些结构变化是了解运输的分子基础的关键和发展可以调节流出的分子。这里,原子力显微镜(AFM)用于在生理pH和环境温度下直接在脂质双层中的单独的PGP转运蛋白分子。 PGP AFM图像的分析显示了来自脂质双层的“小”和“大”突起,具有突出高度和体积的显着差异。这些“小”和“大”突起的几何形状分别与预测的细胞外(EC)和PGP X射线晶体结构的细胞溶胶(C)结构域相关。为了分配这些突起,从PGP X射线晶体结构产生模拟的AFM图像,其中由三种计算方法限定的膜平面,以及模拟80 ?? AFM悬臂尖。 EC和C结构域的理论AFM图像分别具有与实验AFM图像中的“小”和“大”突起的高度和体积相似。通过PGP特异性抗体的突出体积的变化证实了AFM图像中的突起的突起分配给EC和C结构域。 PGP域显示了相当程度的构象动态,分辨AFM图像。利用该信息,在已知的PGP X射线晶体结构的背景下提出了脂质双层中的PGP构象动态的模型。

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