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Mitsugumin 23 Forms a Massive Bowl-Shaped Assembly and Cation-Conducting Channel

机译:Mitsugumin 23形成了一个巨大的碗形装配和传导阳离子的通道

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Mitsugumin 23 (MG23) is a 23 kDa transmembrane protein localized to the sarcoplasmic/endoplasmic reticulum and nuclear membranes in a wide variety of cells. Although the characteristics imply the participation in a fundamental function in intracellular membrane systems, the physiological role of MG23 is unknown. Here we report the biochemical and biophysical characterization of MG23. Hydropathicity profile and limited proteolytic analysis proposed three transmembrane segments in the MG23 primary structure. Chemical cross-linking analysis suggested a homo-oligomeric assembly of MG23. Ultrastructural observations detected a large symmetrical particle as the predominant component and a small asymmetric assembly as the second major component in highly purified MG23 preparations. Single-particle three-dimensional reconstruction revealed that MG23 forms a large bowl-shaped complex equipped with a putative central pore, which is considered an assembly of the small asymmetric subunit. After reconstitution into planar phospholipid bilayers, purified MG23 behaved as a voltage-dependent, cation-conducting channel, permeable to both K+ and Ca2+. A feature of MG23 gating was that multiple channels always appeared to be gating together in the bilayer. Our observations suggest that the bowl-shaped MG23 can transiently assemble and disassemble. These building transitions may underlie the unusual channel gating behavior of MG23 and allow rapid cationic flux across intracellular membrane systems.
机译:Mitsugumin 23(MG23)是一种23 kDa的跨膜蛋白,位于多种细胞的肌浆/内质网和核膜中。尽管该特征暗示参与细胞内膜系统的基本功能,但是MG23的生理作用尚不清楚。在这里,我们报告MG23的生化和生物物理表征。亲水性和有限的蛋白水解分析提出了MG23一级结构中的三个跨膜段。化学交联分析表明MG23是均聚的。超结构观察发现,在高度纯化的MG23制剂中,较大的对称颗粒为主要成分,较小的不对称组件为第二主要成分。单粒子三维重建显示,MG23形成了一个大的碗形复合物,该复合物带有假定的中心孔,这被认为是小的不对称亚基的集合体。重组为平面磷脂双层后,纯化的MG23表现为电压依赖性阳离子传导通道,可同时渗透K +和Ca2 +。 MG23门控的一个特点是,双层中总是有多个通道同时出现在门控中。我们的观察结果表明,碗形MG23可以瞬时组装和拆卸。这些构建过渡可能是MG23异常通道门控行为的基础,并允许跨细胞内膜系统的快速阳离子通量。

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