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水通道蛋白0(AQP0)和连接子在连接微区的超分子组织的结构模型。

Structural models of the supramolecular organization of AQP0 and connexons in junctional microdomains.

作者信息

Scheuring Simon, Buzhynskyy Nikolay, Jaroslawski Szymon, Gonçalves Rui Pedro, Hite Richard K, Walz Thomas

机构信息

Institut Curie, UMR168-CNRS, 26 Rue d'Ulm, 75248 Paris, France.

出版信息

J Struct Biol. 2007 Dec;160(3):385-94. doi: 10.1016/j.jsb.2007.07.009. Epub 2007 Jul 28.

Abstract

Membrane proteins perform many essential cellular functions. Over the last years, substantial advances have been made in our understanding of the structure and function of isolated membrane proteins. However, like soluble proteins, many membrane proteins assemble into supramolecular complexes that perform specific functions in specialized membrane domains. Since supramolecular complexes of membrane proteins are difficult to study by conventional approaches, little is known about their composition, organization and assembly. The high signal-to-noise ratio of the images that can be obtained with an atomic force microscope (AFM) makes this instrument a powerful tool to image membrane protein complexes within native membranes. Recently, we have reported high-resolution topographs of junctional microdomains in native eye lens membranes containing two-dimensional (2D) arrays of aquaporin-0 (AQP0) surrounded by connexons. While both proteins are involved in cell adhesion, AQP0 is a specific water channel whereas connexons form cell-cell communication channels with broad substrate specificity. Here, we have performed a detailed analysis of the supramolecular organization of AQP0 tetramers and connexon hexamers in junctional microdomains in the native lens membrane. We present first structural models of these junctional microdomains, which we generated by docking atomic models of AQP0 and connexons into the AFM topographs. The AQP0 2D arrays in the native membrane show the same molecular packing of tetramers seen in highly ordered double-layered 2D crystals obtained through reconstitution of purified AQP0. In contrast, the connexons that surround the AQP0 arrays are only loosely packed. Based on our AFM observations, we propose a mechanism that may explain the supramolecular organization of AQP0 and connexons in junctional domains in native lens membranes.

摘要

膜蛋白执行许多重要的细胞功能。在过去几年中,我们对分离的膜蛋白的结构和功能的理解取得了重大进展。然而,与可溶性蛋白一样,许多膜蛋白组装成超分子复合物,在特定的膜结构域中执行特定功能。由于膜蛋白的超分子复合物难以用传统方法研究,对其组成、组织和组装了解甚少。原子力显微镜(AFM)能够获得高信噪比的图像,这使得该仪器成为成像天然膜内膜蛋白复合物的强大工具。最近,我们报道了天然晶状体膜中连接微结构域的高分辨率形貌图,其中包含由连接子包围的水通道蛋白0(AQP0)二维(2D)阵列。虽然这两种蛋白都参与细胞黏附,但AQP0是一种特定的水通道,而连接子形成具有广泛底物特异性的细胞间通讯通道。在这里,我们对天然晶状体膜连接微结构域中AQP0四聚体和连接子六聚体的超分子组织进行了详细分析。我们展示了这些连接微结构域的首个结构模型,这些模型是通过将AQP0和连接子的原子模型对接至AFM形貌图中生成的。天然膜中的AQP0二维阵列显示出与通过纯化的AQP0重构获得的高度有序双层二维晶体中所见的四聚体相同的分子堆积。相比之下,包围AQP0阵列的连接子只是松散堆积。基于我们的AFM观察结果,我们提出了一种机制,该机制可能解释天然晶状体膜连接结构域中AQP0和连接子的超分子组织。

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