School of Biological and Biomedical Sciences, The University of Durham, South Road, Durham DH1 3LE, UK.
Philos Trans R Soc Lond B Biol Sci. 2013 Mar 25;368(1617):20120375. doi: 10.1098/rstb.2012.0375. Print 2013 May 5.
CRYAB (αB-crystallin) is expressed in many tissues and yet the R120G mutation in CRYAB causes tissue-specific pathologies, namely cardiomyopathy and cataract. Here, we present evidence to demonstrate that there is a specific functional interaction of CRYAB with desmin intermediate filaments that predisposes myocytes to disease caused by the R120G mutation. We use a variety of biochemical and biophysical techniques to show that plant, animal and ascidian small heat-shock proteins (sHSPs) can interact with intermediate filaments. Nevertheless, the mutation R120G in CRYAB does specifically change that interaction when compared with equivalent substitutions in HSP27 (R140G) and into the Caenorhabditis elegans HSP16.2 (R95G). By transient transfection, we show that R120G CRYAB specifically promotes intermediate filament aggregation in MCF7 cells. The transient transfection of R120G CRYAB alone has no significant effect upon cell viability, although bundling of the endogenous intermediate filament network occurs and the mitochondria are concentrated into the perinuclear region. The combination of R120G CRYAB co-transfected with wild-type desmin, however, causes a significant reduction in cell viability. Therefore, we suggest that while there is an innate ability of sHSPs to interact with and to bind to intermediate filaments, it is the specific combination of desmin and CRYAB that compromises cell viability and this is potentially the key to the muscle pathology caused by the R120G CRYAB.
CRYAB(αB-晶状体蛋白)在许多组织中表达,但 CRYAB 的 R120G 突变导致组织特异性病理,即心肌病和白内障。在这里,我们提供证据表明 CRYAB 与结蛋白中间丝存在特定的功能相互作用,这使心肌容易受到 R120G 突变引起的疾病的影响。我们使用各种生化和生物物理技术来表明植物、动物和海鞘小热休克蛋白(sHSP)可以与中间丝相互作用。然而,与 HSP27(R140G)和秀丽隐杆线虫 HSP16.2(R95G)中的等效取代相比,CRYAB 中的突变 R120G 确实会改变这种相互作用。通过瞬时转染,我们表明 R120G CRYAB 特异性地促进 MCF7 细胞中的中间丝聚集。单独瞬时转染 R120G CRYAB 对细胞活力没有显著影响,尽管内源性中间丝网络发生束状,线粒体集中在核周区域。然而,与野生型结蛋白共转染的 R120G CRYAB 组合会导致细胞活力显著降低。因此,我们认为虽然 sHSP 具有与中间丝相互作用和结合的内在能力,但结蛋白和 CRYAB 的特定组合会损害细胞活力,这可能是 R120G CRYAB 引起肌肉病理的关键。