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异构二聚体 ABC 外排泵在翻转条件下的构象空间。

Conformation space of a heterodimeric ABC exporter under turnover conditions.

机构信息

Institute of Biochemistry, Biocenter, Goethe University Frankfurt, Frankfurt am Main, Germany.

Department of Structural Biology, Max Planck Institute of Biophysics, Frankfurt am Main, Germany.

出版信息

Nature. 2019 Jul;571(7766):580-583. doi: 10.1038/s41586-019-1391-0. Epub 2019 Jul 17.

Abstract

Cryo-electron microscopy (cryo-EM) has the capacity to capture molecular machines in action. ATP-binding cassette (ABC) exporters are highly dynamic membrane proteins that extrude a wide range of substances from the cytosol and thereby contribute to essential cellular processes, adaptive immunity and multidrug resistance. Despite their importance, the coupling of nucleotide binding, hydrolysis and release to the conformational dynamics of these proteins remains poorly resolved, especially for heterodimeric and/or asymmetric ABC exporters that are abundant in humans. Here we present eight high-resolution cryo-EM structures that delineate the full functional cycle of an asymmetric ABC exporter in a lipid environment. Cryo-EM analysis under active turnover conditions reveals distinct inward-facing (IF) conformations-one of them with a bound peptide substrate-and previously undescribed asymmetric post-hydrolysis states with dimerized nucleotide-binding domains and a closed extracellular gate. By decreasing the rate of ATP hydrolysis, we could capture an outward-facing (OF) open conformation-an otherwise transient state vulnerable to substrate re-entry. The ATP-bound pre-hydrolysis and vanadate-trapped states are conformationally equivalent; both comprise co-existing OF conformations with open and closed extracellular gates. By contrast, the post-hydrolysis states from the turnover experiment exhibit asymmetric ATP and ADP occlusion after phosphate release from the canonical site and display a progressive separation of the nucleotide-binding domains and unlocking of the intracellular gate. Our findings reveal that phosphate release, not ATP hydrolysis, triggers the return of the exporter to the IF conformation. By mapping the conformational landscape during active turnover, aided by mutational and chemical modulation of kinetic rates to trap the key intermediates, we resolved fundamental steps of the substrate translocation cycle of asymmetric ABC transporters.

摘要

低温电子显微镜(cryo-EM)能够捕捉处于活动状态的分子机器。ATP 结合盒(ABC)外排泵是高度动态的膜蛋白,可将多种物质从细胞质中排出,从而有助于基本的细胞过程、适应性免疫和多药耐药性。尽管它们很重要,但核苷酸结合、水解和释放与这些蛋白质构象动力学的偶联在很大程度上仍未得到解决,特别是对于在人类中丰富的异源二聚体和/或不对称 ABC 外排泵。在这里,我们呈现了八个高分辨率的 cryo-EM 结构,这些结构描绘了在脂质环境中不对称 ABC 外排泵的完整功能循环。在主动周转条件下的 cryo-EM 分析揭示了独特的内向(IF)构象——其中一种构象结合有肽底物——以及以前未描述的不对称后水解状态,具有二聚化的核苷酸结合域和关闭的细胞外门。通过降低 ATP 水解的速率,我们可以捕获向外(OF)开放构象——否则是易受底物再进入的瞬态状态。ATP 结合的预水解和钒酸盐捕获状态在构象上是等效的;两者都包含共存的 OF 构象,具有打开和关闭的细胞外门。相比之下,周转实验中的后水解状态显示在磷酸从典型位点释放后,不对称的 ATP 和 ADP 阻塞,并显示核苷酸结合域的逐渐分离和细胞内门的解锁。我们的研究结果表明,是磷酸释放而不是 ATP 水解触发外排泵返回 IF 构象。通过在主动周转过程中映射构象景观,借助突变和化学调节动力学速率来捕获关键中间体,我们解决了不对称 ABC 转运蛋白的底物转运循环的基本步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c531/7612745/c647723afdf1/EMS83433-f010.jpg

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