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SAV1866 是一种细菌 ABC 外排泵,ATP 结合诱导的动力学和结构变化。

Dynamics and structural changes induced by ATP binding in SAV1866, a bacterial ABC exporter.

机构信息

Structure et Fonction des Membranes Biologiques, Université Libre de Bruxelles, Boulevard du Triomphe CP 206/2, B-1050 Brussels, Belgium.

出版信息

J Phys Chem B. 2010 Dec 9;114(48):15948-57. doi: 10.1021/jp1038392. Epub 2010 Nov 11.

Abstract

Multidrug transporters of the ATP-binding cassette family export a wide variety of compounds across membranes in both prokaryotes and eukaryotes, using ATP hydrolysis as energy source. Several of these membrane proteins are of clinical importance. Although biochemical and structural studies have provided insights into the mechanism underlying substrate transport, many key questions subsist regarding the molecular and structural nature of this mechanism. In particular, the detailed conformational changes occurring during the catalytic cycle are still elusive. We explored the conformational changes occurring upon ATP/Mg(2+) binding using molecular dynamics simulations starting from the nucleotide-bound structure of SAV1866 embedded in an explicit lipid bilayer. The removal of nucleotide revealed a major rearrangement in the outer membrane leaflet portion of the transmembrane domain (TMD) resulting in the closure of the central cavity at the extracellular side. This closure is similar to that observed in the crystal nucleotide-free structures. The interface of the nucleotide-binding domain dimer (NDB) is significantly more hydrated in the nucleotide-free trajectory though it is not disrupted. This finding suggests that the TMD closure could occur as a first step preceding the dissociation of the dimer. The transmission pathway of the signal triggered by the removal of ATP/Mg(2+) mainly involves the conserved Q-loop and X-loop as well as TM6.

摘要

多药转运蛋白 ABC 家族利用 ATP 水解作为能量来源,将各种化合物在原核生物和真核生物的跨膜中输出。这些膜蛋白中有几种具有临床重要性。尽管生化和结构研究为底物运输的机制提供了深入的了解,但对于该机制的分子和结构性质仍存在许多关键问题。特别是,在催化循环中发生的详细构象变化仍然难以捉摸。我们使用分子动力学模拟,从嵌入在明确脂质双层中的 SAV1866 的核苷酸结合结构开始,探索了在 ATP/Mg(2+)结合时发生的构象变化。核苷酸的去除揭示了跨膜域(TMD)的外膜叶部分的主要重排,导致细胞外侧中央腔的闭合。这种闭合类似于在晶体无核苷酸结构中观察到的。尽管没有被破坏,但在无核苷酸轨迹中,核苷酸结合域二聚体(NDB)的界面的水合程度明显更高。这一发现表明,TMD 的闭合可能作为二聚体解离之前的第一步发生。由 ATP/Mg(2+)去除触发的信号的传递途径主要涉及保守的 Q 环和 X 环以及 TM6。

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