Pan Lurong, Aller Stephen G
Department of Pharmacology and Toxicology, University of Alabama at Birmingham, 1025 18th Street South, Birmingham, AL, 35205 USA.
Sci Rep. 2015 Jan 20;5:7880. doi: 10.1038/srep07880.
P-glycoprotein (Pgp) is an ATP-binding cassette (ABC) transporter that alternates between inward- and outward-facing conformations to capture and force substrates out of cells like a peristaltic pump. The high degree of similarity in outward-facing structures across evolution of ABC transporters allowed construction of a high-confidence outward-facing Pgp atomic model based on crystal structures of outward-facing Sav1866 and inward-facing Pgp. The model adhered to previous experimentally determined secondary- and tertiary- configurations during all-atom molecular dynamics simulations in the presence or absence of MgATP. Three long lasting (>100 ns) meta-stable states were apparent in the presence of MgATP revealing new insights into alternating access. The two ATP-binding pockets are highly asymmetric resulting in differential control of overall structural dynamics and allosteric regulation of the drug-binding pocket. Equilibrated Pgp has a considerably different electrostatic profile compared to Sav1866 that implicates significant kinetic and thermodynamic differences in transport mechanisms.
P-糖蛋白(Pgp)是一种ATP结合盒(ABC)转运蛋白,它在内向和外向构象之间交替,像蠕动泵一样捕获并将底物排出细胞。ABC转运蛋白在进化过程中外向结构的高度相似性使得基于外向型Sav1866和内向型Pgp的晶体结构构建出一个高可信度的外向型Pgp原子模型。在存在或不存在MgATP的全原子分子动力学模拟过程中,该模型均符合先前通过实验确定的二级和三级结构。在存在MgATP的情况下,出现了三种持续时间较长(>100纳秒)的亚稳态,这为交替通路提供了新的见解。两个ATP结合口袋高度不对称,导致对整体结构动力学的差异控制以及对药物结合口袋的变构调节。与Sav1866相比,平衡态的Pgp具有显著不同的静电分布,这意味着转运机制在动力学和热力学上存在重大差异。