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分离的连接蛋白26间隙连接表面结构的构象变化。

Conformational changes in surface structures of isolated connexin 26 gap junctions.

作者信息

Müller Daniel J, Hand Galen M, Engel Andreas, Sosinsky Gina E

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics and BIOTEC, Technical University Dresden, Dresden, Germany.

出版信息

EMBO J. 2002 Jul 15;21(14):3598-607. doi: 10.1093/emboj/cdf365.

Abstract

Gap junction channels mediate communication between adjacent cells. Using atomic force microscopy (AFM), we have imaged conformational changes of the cytoplasmic and extracellular surfaces of native connexin 26 gap junction plaques. The cytoplasmic domains of the gap junction surface, imaged at submolecular resolution, form a hexameric pore protruding from the membrane bilayer. Exhibiting an intrinsic flexibility, these cytoplasmic domains, comprising the C-terminal connexin end, reversibly collapse by increasing the forces applied to the AFM stylus. The extracellular connexon surface was imaged after dissection of the gap junction with the AFM stylus. Upon injection of Ca(2+) into the buffer solution, the extracellular channel entrance reduced its diameter from 1.5 to 0.6 nm, a conformational change that is fully reversible and specific among the divalent cations tested. Ca(2+) had a profound effect on the cytoplasmic surface also, inducing the formation of microdomains. Consequently, the plaque height increased by 0.6 nm to 18 nm. This suggests that calcium ions induce conformational changes affecting the structure of both the hemichannels and the intact channels forming cell-cell contacts.

摘要

间隙连接通道介导相邻细胞间的通讯。利用原子力显微镜(AFM),我们对天然连接蛋白26间隙连接斑的胞质面和胞外面的构象变化进行了成像。以亚分子分辨率成像的间隙连接表面的胞质结构域形成了一个从膜双层突出的六聚体孔。这些包含连接蛋白C末端的胞质结构域具有内在的灵活性,通过增加施加到AFM探针上的力会可逆地塌陷。在用AFM探针切开间隙连接后,对胞外连接子表面进行了成像。向缓冲溶液中注入Ca(2+)后,胞外通道入口直径从1.5纳米减小到0.6纳米,这种构象变化在测试的二价阳离子中是完全可逆且具有特异性的。Ca(2+)对胞质表面也有深远影响,诱导微结构域的形成。因此,斑高度增加了0.6纳米至18纳米。这表明钙离子诱导的构象变化影响了半通道和形成细胞间接触的完整通道的结构。

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