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突触结合蛋白7 C2A结构域的膜对接:电子顺磁共振测量显示两个膜结合环的作用。

Membrane Docking of the Synaptotagmin 7 C2A Domain: Electron Paramagnetic Resonance Measurements Show Contributions from Two Membrane Binding Loops.

作者信息

Osterberg J Ryan, Chon Nara Lee, Boo Arthur, Maynard Favinn A, Lin Hai, Knight Jefferson D

机构信息

Department of Chemistry, University of Colorado Denver , Denver, Colorado 80217, United States.

出版信息

Biochemistry. 2015 Sep 22;54(37):5684-95. doi: 10.1021/acs.biochem.5b00421. Epub 2015 Sep 10.

Abstract

The synaptotagmin (Syt) family of proteins plays an important role in vesicle docking and fusion during Ca(2+)-induced exocytosis in a wide variety of cell types. Its role as a Ca(2+) sensor derives primarily from its two C2 domains, C2A and C2B, which insert into anionic lipid membranes upon binding Ca(2+). Syt isoforms 1 and 7 differ significantly in their Ca(2+) sensitivity; the C2A domain from Syt7 binds Ca(2+) and membranes much more tightly than the C2A domain from Syt1, at least in part because of greater contributions from the hydrophobic effect. While the structure and membrane activity of Syt1 have been extensively studied, the structural origins of differences between Syt1 and Syt7 are unknown. This study used site-directed spin labeling and electron paramagnetic resonance spectroscopy to determine depth parameters for the Syt7 C2A domain, for comparison to analogous previous measurements with the Syt1 C2A domain. In a novel approach, the membrane docking geometry of both Syt1 and Syt7 C2A was modeled by mapping depth parameters onto multiple molecular dynamics-simulated structures of the Ca(2+)-bound protein. The models reveal membrane penetration of Ca(2+) binding loops 1 (CBL1) and 3 (CBL3), and membrane binding is more sensitive to mutations in CBL3. On average, Syt7 C2A inserts more deeply into the membrane than Syt1 C2A, although depths vary among the different structural models. This observation provides a partial structural explanation for the hydrophobically driven membrane docking of Syt7 C2A.

摘要

在多种细胞类型中,钙触发的胞吐作用过程中,突触结合蛋白(Syt)家族蛋白在囊泡对接和融合中发挥着重要作用。其作为钙传感器的作用主要源于其两个C2结构域,即C2A和C2B,它们在结合钙离子后插入阴离子脂质膜中。Syt亚型1和7在钙敏感性上有显著差异;至少部分由于疏水作用的贡献更大,Syt7的C2A结构域比Syt1的C2A结构域更紧密地结合钙离子和膜。虽然Syt1的结构和膜活性已经得到广泛研究,但Syt1和Syt7之间差异的结构根源尚不清楚。本研究使用定点自旋标记和电子顺磁共振光谱法来确定Syt7 C2A结构域的深度参数,以便与之前对Syt1 C2A结构域的类似测量进行比较。采用一种新方法,通过将深度参数映射到钙离子结合蛋白的多个分子动力学模拟结构上,对Syt1和Syt7 C2A的膜对接几何结构进行建模。模型揭示了钙离子结合环1(CBL1)和3(CBL3)的膜穿透情况,并且膜结合对CBL3中的突变更敏感。平均而言,Syt7 C2A比Syt1 C2A更深地插入膜中,尽管不同结构模型中的深度有所不同。这一观察结果为Syt7 C2A疏水驱动的膜对接提供了部分结构解释。

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