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一种细菌铜(I)-ATP酶与复杂脂质环境的相互作用。

Interactions of a Bacterial Cu(I)-ATPase with a Complex Lipid Environment.

作者信息

Autzen Henriette E, Koldsø Heidi, Stansfeld Phillip J, Gourdon Pontus, Sansom Mark S P, Nissen Poul

机构信息

Centre for Membrane Pumps in Cells and Disease (PUMPkin) , Danish National Research Foundation , 8000 Aarhus , Denmark.

Department of Molecular Biology and Genetics , Aarhus University , Gustav Wieds vej 10C , 8000 Aarhus C, Denmark.

出版信息

Biochemistry. 2018 Jul 17;57(28):4063-4073. doi: 10.1021/acs.biochem.8b00326. Epub 2018 Jun 27.

Abstract

Phospholipids and sterols play multiple roles in cells. In addition to establishing barriers between compartments, they also provide the matrix for assembly and function of a large variety of catalytic processes. Lipid composition is a highly regulated feature of biological membranes, yet its implications for membrane proteins are difficult problems to approach. One obstacle is the inherent complexity of observing and describing these interactions and their dynamics at a molecular and atomic level. However, lipid interactions are pivotal for membrane protein function and should be acknowledged. The enzymatic activity of several different P-type ATPases, one of the major families of ion pumping primary active transporters, has previously been shown to exhibit a strong dependence on phospholipids; however, distinguishing the effects of annular and specific lipid interactions is challenging. Here we show that the hydrolytic activity of a bacterial Cu(I)-transporting P-type ATPase (LpCopA) is stimulated by the bacterial, anionic phospholipid cardiolipin and to some extent by phosphatidylglycerol. Furthermore, multiscale molecular dynamics simulations pinpoint lipid hot spots on the membrane-spanning domain of LpCopA. Thus, using two independent methods, our study shows converging evidence that the lipid membrane composition plays an important role for LpCopA.

摘要

磷脂和固醇在细胞中发挥多种作用。除了在不同区室之间建立屏障外,它们还为多种催化过程的组装和功能提供基质。脂质组成是生物膜的一个高度受调控的特征,但其对膜蛋白的影响是难以解决的问题。一个障碍是在分子和原子水平上观察和描述这些相互作用及其动态的内在复杂性。然而,脂质相互作用对于膜蛋白功能至关重要,应该予以承认。几种不同的P型ATP酶(离子泵浦主要主动转运蛋白的主要家族之一)的酶活性先前已被证明对磷脂有强烈依赖性;然而,区分环形脂质相互作用和特异性脂质相互作用的影响具有挑战性。在这里,我们表明细菌铜(I)转运P型ATP酶(LpCopA)的水解活性受到细菌阴离子磷脂心磷脂的刺激,并在一定程度上受到磷脂酰甘油的刺激。此外,多尺度分子动力学模拟确定了LpCopA跨膜结构域上的脂质热点。因此,通过两种独立的方法,我们的研究显示了一致的证据,即脂质膜组成对LpCopA起着重要作用。

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