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间隙连接通道的结构组织

Structural organization of gap junction channels.

作者信息

Sosinsky Gina E, Nicholson Bruce J

机构信息

National Center for Microscopy and Imaging Research, Department of Neurosciences, University of California San Diego, La Jolla, CA 92093-0608, USA.

出版信息

Biochim Biophys Acta. 2005 Jun 10;1711(2):99-125. doi: 10.1016/j.bbamem.2005.04.001. Epub 2005 Apr 19.

Abstract

Gap junctions were initially described morphologically, and identified as semi-crystalline arrays of channels linking two cells. This suggested that they may represent an amenable target for electron and X-ray crystallographic studies in much the same way that bacteriorhodopsin has. Over 30 years later, however, an atomic resolution structural solution of these unique intercellular pores is still lacking due to many challenges faced in obtaining high expression levels and purification of these structures. A variety of microscopic techniques, as well as NMR structure determination of fragments of the protein, have now provided clearer and correlated views of how these structures are assembled and function as intercellular conduits. As a complement to these structural approaches, a variety of mutagenic studies linking structure and function have now allowed molecular details to be superimposed on these lower resolution structures, so that a clearer image of pore architecture and its modes of regulation are beginning to emerge.

摘要

间隙连接最初是通过形态学描述的,并被鉴定为连接两个细胞的通道的半结晶阵列。这表明它们可能像细菌视紫红质一样,是电子和X射线晶体学研究的合适靶点。然而,30多年后,由于在获得这些结构的高表达水平和纯化方面面临许多挑战,这些独特的细胞间孔隙的原子分辨率结构解决方案仍然缺乏。现在,各种显微镜技术以及蛋白质片段的核磁共振结构测定,已经提供了关于这些结构如何组装以及如何作为细胞间通道发挥功能的更清晰和相关的观点。作为这些结构方法的补充,现在各种将结构与功能联系起来的诱变研究已经能够将分子细节叠加到这些低分辨率结构上,从而使孔隙结构及其调节模式的更清晰图像开始显现出来。

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