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脂质结合域致膜变形的机制。

Mechanisms of membrane deformation by lipid-binding domains.

机构信息

Department of Biochemistry and Molecular Biology, Kobe University Graduate School of Medicine, Kusunoki-cho, Chuo-ku, Japan.

出版信息

Prog Lipid Res. 2009 Sep;48(5):298-305. doi: 10.1016/j.plipres.2009.05.002. Epub 2009 May 27.

Abstract

Among an increasing number of lipid-binding domains, a group that not only binds to membrane lipids but also changes the shape of the membrane has been found. These domains are characterized by their strong ability to transform globular liposomes as well as flat plasma membranes into elongated membrane tubules both in vitro and in vivo. Biochemical studies on the structures of these proteins have revealed the importance of the amphipathic helix, which potentially intercalates into the lipid bilayer to induce and/or sense membrane curvature. Among such membrane-deforming domains, BAR and F-BAR/EFC domains form crescent-shaped dimers, suggesting a preference for a curved membrane, which is important for curvature sensing. Bioinformatics in combination with structural analyses has been identifying an increasing number of novel families of lipid-binding domains. This review attempts to summarize the evidence obtained by recent studies in order to gain general insights into the roles of membrane-deforming domains in a variety of biological events.

摘要

在越来越多的脂质结合结构域中,发现了一组不仅能与膜脂质结合,还能改变膜形状的结构域。这些结构域的特点是具有很强的能力,能够在体外和体内将球状脂质体和平坦的质膜转变为伸长的膜小管。对这些蛋白质结构的生化研究揭示了潜在插入脂质双层以诱导和/或感知膜曲率的两亲性螺旋的重要性。在这些膜变形结构域中,BAR 和 F-BAR/EFC 结构域形成新月形二聚体,表明对弯曲膜的偏好,这对于曲率感应很重要。生物信息学与结构分析相结合,已经确定了越来越多的新型脂质结合结构域家族。这篇综述试图总结最近研究中获得的证据,以便对膜变形结构域在各种生物学事件中的作用获得一般性的认识。

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