Le Rumeur Elisabeth, Winder Steve J, Hubert Jean-François
Université de Rennes 1, UMR CNRS 6026 Interactions cellulaires et moléculaires, Equipe RMN et Interactions lipides-protéines, IFR 140, Faculté de Médecine, CS 34317, 35043 Rennes cedex, France.
Biochim Biophys Acta. 2010 Sep;1804(9):1713-22. doi: 10.1016/j.bbapap.2010.05.001. Epub 2010 May 21.
Dystrophin is one of a number of large cytoskeleton associated proteins that connect between various cytoskeletal elements and often are tethered to the membrane through other transmembrane protein complexes. These cytolinker proteins often provide structure and support to the cells where they are expressed, and mutations in genes encoding these proteins frequently gives rise to disease. Dystrophin is no exception in any of these respects, providing connections between a transmembrane complex known as the dystrophin-glycoprotein complex and the underlying cytoskeleton. The most established connection and possibly the most important is that to F-actin, but more recently evidence has been forthcoming of connections to membrane phospholipids, intermediate filaments and microtubules. Moreover it is becoming increasingly clear that the multiple spectrin-like repeats in the centre of the molecule, that had hitherto been thought to be largely redundant, harbour binding activities that have a significant impact on dystrophin functionality. This functionality is particularly apparent when assessed by the ability to rescue the dystrophic phenotype in mdx mice. This review will focus on the relatively neglected but functionally vital coiled-coil region of dystrophin, highlighting the structural relationships and interactions of the coiled-coil region and providing new insights into the functional role of this region.
肌营养不良蛋白是众多与细胞骨架相关的大型蛋白质之一,这些蛋白质连接各种细胞骨架元件,并且常常通过其他跨膜蛋白复合物与膜相连。这些细胞连接蛋白通常为它们所表达的细胞提供结构和支撑,编码这些蛋白质的基因突变常常会引发疾病。肌营养不良蛋白在这些方面也不例外,它在一种称为肌营养不良蛋白-糖蛋白复合物的跨膜复合物与潜在的细胞骨架之间建立连接。最确定且可能最重要的连接是与F-肌动蛋白的连接,但最近也有证据表明存在与膜磷脂、中间丝和微管的连接。此外,越来越明显的是,分子中心的多个血影蛋白样重复序列,此前一直被认为在很大程度上是多余的,但它们具有对肌营养不良蛋白功能有重大影响的结合活性。当通过拯救mdx小鼠的营养不良表型的能力来评估时,这种功能尤为明显。本综述将聚焦于肌营养不良蛋白中相对被忽视但功能至关重要的卷曲螺旋区域,突出卷曲螺旋区域的结构关系和相互作用,并为该区域的功能作用提供新的见解。