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膜联蛋白-磷脂相互作用。功能意义。

Annexin-phospholipid interactions. Functional implications.

机构信息

Department of Biochemistry and Molecular Biology I, Faculty of Chemistry, Complutense University, Madrid 28040, Spain.

出版信息

Int J Mol Sci. 2013 Jan 28;14(2):2652-83. doi: 10.3390/ijms14022652.

Abstract

Annexins constitute an evolutionary conserved multigene protein superfamily characterized by their ability to interact with biological membranes in a calcium dependent manner. They are expressed by all living organisms with the exception of certain unicellular organisms. The vertebrate annexin core is composed of four (eight in annexin A6) homologous domains of around 70 amino acids, with the overall shape of a slightly bent ring surrounding a central hydrophilic pore. Calcium- and phospholipid-binding sites are located on the convex side while the N-terminus links domains I and IV on the concave side. The N-terminus region shows great variability in length and amino acid sequence and it greatly influences protein stability and specific functions of annexins. These proteins interact mainly with acidic phospholipids, such as phosphatidylserine, but differences are found regarding their affinity for lipids and calcium requirements for the interaction. Annexins are involved in a wide range of intra- and extracellular biological processes in vitro, most of them directly related with the conserved ability to bind to phospholipid bilayers: membrane trafficking, membrane-cytoskeleton anchorage, ion channel activity and regulation, as well as antiinflammatory and anticoagulant activities. However, the in vivo physiological functions of annexins are just beginning to be established.

摘要

膜联蛋白构成了一个进化上保守的多基因蛋白超家族,其特征是能够以依赖于钙的方式与生物膜相互作用。除了某些单细胞生物外,所有生物都能表达膜联蛋白。脊椎动物膜联蛋白核心由四个(膜联蛋白 A6 有八个)约 70 个氨基酸的同源结构域组成,整体形状为一个略微弯曲的环,环绕着一个中央亲水孔。钙和磷脂结合位点位于凸面,而 N 端连接凹面的结构域 I 和 IV。N 端区域在长度和氨基酸序列上具有很大的可变性,它极大地影响了膜联蛋白的稳定性和特定功能。这些蛋白主要与酸性磷脂(如磷脂酰丝氨酸)相互作用,但在它们对脂质的亲和力和相互作用所需的钙离子方面存在差异。膜联蛋白参与了广泛的细胞内和细胞外的生物过程,其中大多数与结合磷脂双层的保守能力直接相关:膜运输、膜-细胞骨架锚定、离子通道活性和调节,以及抗炎和抗凝活性。然而,膜联蛋白的体内生理功能才刚刚开始被确定。

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