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Evidence for a requirement for ATP hydrolysis at two distinct steps during a single turnover of the catalytic cycle of human P-glycoprotein

机译:在人类P-糖蛋白催化循环的一次转换中需要在两个不同的步骤进行ATP水解的证据

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摘要

P-glycoprotein (Pgp) is an ATP-dependent hydrophobic natural product anticancer drug efflux pump whose overexpression confers multidrug resistance to tumor cells. The work reported here deals with the elucidation of the energy requirement for substrate interaction with Pgp during the catalytic cycle. We show that the Kd (412 nM) of the substrate analogue [125I]iodoarylazidoprazoin for Pgp is not altered by the presence of the nonhydrolyzable nucleotide 5′-adenylylimididiphosphate and vanadate (Kd = 403 nM). Though binding of nucleotide per se does not affect interactions with the substrate, ATP hydrolysis results in a dramatic conformational change where the affinity of [125I]iodoarylazidoprazoin for Pgp trapped in transition-state conformation (Pgp⋅ADP⋅vanadate) is reduced >30-fold. To transform Pgp from this intermediate state of low affinity for substrate to the next catalytic cycle, i.e., a conformation that binds substrate with high affinity, requires conditions that permit ATP hydrolysis. Additionally, there is an inverse correlation (R2 = 0.96) between 8AzidoADP (or ADP) release and the recovery of substrate binding. These results suggest that the release of nucleotide is necessary for reactivation but not sufficient. The hydrolysis of additional molecule(s) of ATP (or 8AzidoATP) is obligatory for the catalytic cycle to advance to completion. These data are consistent with the observed stoichiometry of two ATP molecules hydrolyzed for the transport of every substrate molecule. Our data demonstrate two distinct roles for ATP hydrolysis in a single turnover of the catalytic cycle of Pgp, one in the transport of substrate and the other in effecting conformational changes to reset the pump for the next catalytic cycle.
机译:P-糖蛋白(Pgp)是ATP依赖的疏水性天然产物抗癌药物外排泵,其过表达赋予肿瘤细胞多药耐药性。此处报道的工作阐明了催化循环中底物与Pgp相互作用所需的能量。我们显示,Pgp的底物类似物[125I] iodoarylazidoprazoin的Kd(412 nM)不会因不可水解核苷酸5'-adenylylimididiphosphate和钒酸盐(Kd = 403 nM)的存在而改变。虽然核苷酸本身的结合不会影响与底物的相互作用,但是ATP水解会导致构象发生剧烈变化,其中[125I]碘代芳基叠氮杂唑啉与被困在过渡态构象中的Pgp(Pgp·ADP·钒酸盐)的亲和力降低> 30-折。为了使Pgp从对底物的低亲和力的中间状态转变为下一催化循环,即以高亲和力结合底物的构象,需要允许ATP水解的条件。此外,8AzidoADP(或ADP)的释放与底物结合的恢复之间存在负相关(R2 = 0.96)。这些结果表明核苷酸的释放对于重新激活是必需的,但还不够。 ATP(或8AzidoATP)的其他分子的水解对于催化循环必不可少。这些数据与观察到的两个ATP分子被水解以运输每个底物分子的化学计量一致。我们的数据证明了ATP水解在Pgp催化循环的单个周转中有两个不同的作用,一个在底物的运输中,另一个在影响构象变化以重置泵用于下一个催化循环中。

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