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解开两性离子脂质层表观电荷的起源

Unraveling the Origin of the Apparent Charge of Zwitterionic Lipid Layers.

作者信息

Dreier Lisa B, Wolde-Kidan Amanuel, Bonthuis Douwe Jan, Netz Roland R, Backus Ellen H G, Bonn Mischa

机构信息

Max Planck Institute for Polymer Research , Ackermannweg 10 , 55128 Mainz , Germany.

Graduate School Materials Science in Mainz , Staudingerweg 9 , 55128 Mainz , Germany.

出版信息

J Phys Chem Lett. 2019 Oct 17;10(20):6355-6359. doi: 10.1021/acs.jpclett.9b02587. Epub 2019 Oct 7.

Abstract

The structure of water molecules in contact with zwitterionic lipid molecules is of great biological relevance, because biological membranes are largely composed of such lipids. The interaction of the interfacial water molecules with the amphiphilic lipid molecules drives the formation of membranes and greatly influences various processes at the membrane surface, as the field that arises from the aligned interfacial water molecules masks the charges of the lipid headgroups from the approaching metabolites. To increase our understanding of the influence of water molecules on biological processes we study their structure at the interface using sum-frequency generation spectroscopy and molecular dynamics simulations. Interestingly, we find that water molecules at zwitterionic lipid molecules are mainly oriented by the field arising between the two oppositely charged molecular moieties within the lipid headgroups.

摘要

与两性离子脂质分子接触的水分子结构具有重大生物学意义,因为生物膜主要由这类脂质组成。界面水分子与两亲性脂质分子的相互作用驱动了膜的形成,并极大地影响膜表面的各种过程,因为排列整齐的界面水分子产生的电场会屏蔽脂质头部基团免受接近的代谢物的电荷影响。为了增进我们对水分子对生物过程影响的理解,我们使用和频产生光谱和分子动力学模拟研究它们在界面处的结构。有趣的是,我们发现两性离子脂质分子处的水分子主要由脂质头部基团内两个带相反电荷的分子部分之间产生的电场定向排列。

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