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间隙连接结构:已被揭示,但尚未完全阐明。

Gap junction structure: unraveled, but not fully revealed.

作者信息

Beyer Eric C, Berthoud Viviana M

机构信息

Department of Pediatrics, University of Chicago, Chicago, IL, 60637, USA.

出版信息

F1000Res. 2017 Apr 26;6:568. doi: 10.12688/f1000research.10490.1. eCollection 2017.

Abstract

Gap junction channels facilitate the intercellular exchange of ions and small molecules, a process that is critical for the function of many different kinds of cells and tissues. Recent crystal structures of channels formed by one connexin isoform (connexin26) have been determined, and they have been subjected to molecular modeling. These studies have provided high-resolution models to gain insights into the mechanisms of channel conductance, molecular permeability, and gating. The models share similarities, but there are some differences in the conclusions reached by these studies. Many unanswered questions remain to allow an atomic-level understanding of intercellular communication mediated by connexin26. Because some domains of the connexin polypeptides are highly conserved (like the transmembrane regions), it is likely that some features of the connexin26 structure will apply to other members of the family of gap junction proteins. However, determination of high-resolution structures and modeling of other connexin channels will be required to account for the diverse biophysical properties and regulation conferred by the differences in their sequences.

摘要

间隙连接通道促进离子和小分子的细胞间交换,这一过程对许多不同类型的细胞和组织的功能至关重要。由一种连接蛋白亚型(连接蛋白26)形成的通道的近期晶体结构已被确定,并已进行分子建模。这些研究提供了高分辨率模型,以深入了解通道电导、分子通透性和门控机制。这些模型有相似之处,但这些研究得出的结论存在一些差异。许多未解决的问题仍然存在,以便对由连接蛋白26介导的细胞间通讯进行原子水平的理解。由于连接蛋白多肽的一些结构域高度保守(如跨膜区域),连接蛋白26结构的一些特征可能适用于间隙连接蛋白家族的其他成员。然而,需要确定其他连接蛋白通道的高分辨率结构并进行建模,以解释其序列差异所赋予的多样生物物理特性和调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc33/5414816/a8755a14a48c/f1000research-6-11305-g0000.jpg

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