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晶状体四跨膜蛋白MP20的多态性组装体和晶体阵列

Polymorphic assemblies and crystalline arrays of lens tetraspanin MP20.

作者信息

Gonen Tamir, Hite Richard K, Cheng Yifan, Petre Benjamin M, Kistler Joerg, Walz Thomas

机构信息

School of Biological Sciences, University of Auckland, Auckland, New Zealand.

出版信息

J Mol Biol. 2008 Feb 15;376(2):380-92. doi: 10.1016/j.jmb.2007.09.001. Epub 2007 Sep 8.

Abstract

Members of the tetraspanin superfamily function as transmembrane scaffold proteins that mediate the assembly of membrane proteins into specific signaling complexes. Tetraspanins also interact with each other and concentrate membrane proteins into tetraspanin-enriched microdomains (TEMs). Here we report that lens-specific tetraspanin MP20 can form multiple types of higher-order assemblies and we present crystalline arrays of MP20. When isolated in the absence of divalent cations, MP20 is solubilized predominantly in tetrameric form, whereas the presence of divalent cations during solubilization promotes the association of MP20 tetramers into higher-order species. This effect only occurs when divalent cations are present during solubilization but not when divalent cations are added to solubilized tetrameric MP20, suggesting that other factors may also be involved. When purified MP20 tetramers are reconstituted with native lens lipids in the presence of magnesium, MP20 forms two-dimensional (2D) crystals. A projection map at 18 A resolution calculated from negatively stained 2D crystals showed that the building block of the crystal is an octamer consisting of two tetramers related to each other by 2-fold symmetry. In addition to 2D crystals, reconstitution of MP20 with native lipids also produced a variety of large protein-lipid complexes, and we present three-dimensional (3D) reconstructions of the four most abundant of these complexes in negative stain. The various complexes formed by MP20 most likely reflect the many ways in which tetraspanins can interact with each other to allow formation of TEMs.

摘要

四跨膜蛋白超家族成员作为跨膜支架蛋白发挥作用,介导膜蛋白组装成特定的信号复合物。四跨膜蛋白还相互作用,将膜蛋白浓缩到富含四跨膜蛋白的微结构域(TEMs)中。在此,我们报告晶状体特异性四跨膜蛋白MP20可形成多种类型的高阶组装体,并展示了MP20的晶体阵列。在没有二价阳离子的情况下分离时,MP20主要以四聚体形式溶解,而在溶解过程中存在二价阳离子则促进MP20四聚体缔合形成高阶物种。这种效应仅在溶解过程中存在二价阳离子时才会发生,而当二价阳离子添加到已溶解的四聚体MP20中时则不会发生,这表明可能还涉及其他因素。当在镁存在的情况下用天然晶状体脂质重构纯化的MP20四聚体时,MP20形成二维(2D)晶体。从经负染的2D晶体计算得出的18埃分辨率的投影图显示,晶体的基本结构单元是一个八聚体,由两个通过二重对称相互关联的四聚体组成。除了2D晶体外,用天然脂质重构MP20还产生了多种大的蛋白质-脂质复合物,我们展示了其中四种最丰富的复合物在负染下的三维(3D)重建。MP20形成的各种复合物很可能反映了四跨膜蛋白相互作用以形成TEMs的多种方式。

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