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来自Cx26半通道电场激发及HeLa转染细胞诱变研究对开放机制的提示

Cues to Opening Mechanisms From Electric Field Excitation of Cx26 Hemichannel and Mutagenesis Studies in HeLa Transfectans.

作者信息

Zonta Francesco, Buratto Damiano, Crispino Giulia, Carrer Andrea, Bruno Francesca, Yang Guang, Mammano Fabio, Pantano Sergio

机构信息

Shanghai Institute for Advanced Immunochemical Studies, ShanghaiTech University, Shanghai, China.

CNR Institute of Cell Biology and Neurobiology, Monterotondo, Italy.

出版信息

Front Mol Neurosci. 2018 May 31;11:170. doi: 10.3389/fnmol.2018.00170. eCollection 2018.

Abstract

Connexin channels play numerous essential roles in virtually every organ by mediating solute exchange between adjacent cells, or between cytoplasm and extracellular milieu. Our understanding of the structure-function relationship of connexin channels relies on X-ray crystallographic data for human connexin 26 (hCx26) intercellular gap junction channels. Comparison of experimental data and molecular dynamics simulations suggests that the published structures represent neither fully-open nor closed configurations. To facilitate the search for alternative stable configurations, we developed a coarse grained (CG) molecular model of the hCx26 hemichannel and studied its responses to external electric fields. When challenged by a field of 0.06 V/nm, the hemichannel relaxed toward a novel configuration characterized by a widened pore and an increased bending of the second transmembrane helix (TM2) at the level of the conserved Pro87. A point mutation that inhibited such transition in our simulations impeded hemichannel opening in electrophysiology and dye uptake experiments conducted on HeLa tranfectants. These results suggest that the hCx26 hemichannel uses a global degree of freedom to transit between different configuration states, which may be shared among the whole connexin family.

摘要

连接蛋白通道通过介导相邻细胞之间,或细胞质与细胞外环境之间的溶质交换,在几乎每个器官中发挥着众多重要作用。我们对连接蛋白通道结构-功能关系的理解依赖于人类连接蛋白26(hCx26)细胞间缝隙连接通道的X射线晶体学数据。实验数据与分子动力学模拟的比较表明,已发表的结构既不代表完全开放也不代表封闭构型。为了便于寻找其他稳定构型,我们开发了一种hCx26半通道的粗粒度(CG)分子模型,并研究了其对外部电场的响应。当受到0.06 V/nm的电场作用时,半通道向一种新构型松弛,其特征是孔径变宽,第二个跨膜螺旋(TM2)在保守的Pro87水平处弯曲增加。在我们的模拟中抑制这种转变的点突变阻碍了在HeLa转染细胞上进行的电生理学和染料摄取实验中的半通道开放。这些结果表明,hCx26半通道利用全局自由度在不同构型状态之间转变,这可能是整个连接蛋白家族共有的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ab4/5990870/df2941fa9993/fnmol-11-00170-g0001.jpg

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