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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Different molecular arrangements of the tetrameric annexin 2 modulate the size and dynamics of membrane aggregation.
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Different molecular arrangements of the tetrameric annexin 2 modulate the size and dynamics of membrane aggregation.

机译:四聚膜联蛋白2的不同分子排列调节膜聚集的大小和动力学。

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Annexin 2, a member of the annexin family of Ca(2+)-dependent membrane binding proteins is found in monomeric and heterotetrameric forms and has been involved in different membrane related functions. The heterotetrameric annexin 2 is composed of a dimer of S100A10, a member of the S100 family of Ca(2+) binding proteins and two annexin 2 molecules ((Anx2-S100A10)(2)). Different molecular models including tetramers and octamers in which S100A10 is localized in the centre of the complex with the annexin 2 molecules positioned around S100A10 had been proposed. Herein, the organization of the (Anx2-S100A10)(2) complex in conditions in which membranes are able to bridge was studied. We performed Cryo-electron microscopy observations of the tetrameric annexin 2 on the membrane surface, and study the S100A10 accessibility to antibodies by flow "cytometry". We also studied the kinetics and size evolution of vesicle aggregates by dynamic light scattering. The results show that the protein is able to organize in three different arrangements depending on the presence of Ca(2+) and pH and that the aggregation is faster in the presence of Ca(2+) compared with the aggregation in its absence. In one arrangement the S100A10 molecule is exposed to the solvent allowing its interaction with other proteins. The presented results will serve as a molecular basis to explain some of the functions of the tetrameric annexin 2.
机译:膜联蛋白2,膜联蛋白家族的Ca(2+)依赖膜结合蛋白的成员,发现单体和异四聚体形式,并已参与不同的膜相关功能。异四聚体膜联蛋白2由S100A10的二聚体,Ca(2+)结合蛋白S100家族的成员和两个膜联蛋白2分子((Anx2-S100A10)(2))组成。已经提出了包括四聚体和八聚体的不同分子模型,其中S100A10位于复合物的中心,膜联蛋白2分子位于S100A10周围。本文中,研究了在膜能够桥接的条件下(Anx2-S100A10)(2)配合物的组织。我们在膜表面进行了四聚膜联蛋白2的低温电子显微镜观察,并通过流式细胞术研究了S100A10对抗体的可及性。我们还通过动态光散射研究了囊泡聚集体的动力学和尺寸演化。结果表明,该蛋白质能够根据Ca(2+)和pH的存在以三种不同的方式组织,并且与不存在时的聚集相比,存在Ca(2+)时的聚集更快。在一种布置中,S100A10分子暴露于溶剂中,从而使其与其他蛋白质相互作用。提出的结果将作为分子基础来解释四聚膜联蛋白2的某些功能。

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