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首页> 外文期刊>Molecular biology of the cell >Desmin aggregate formation by R120G alpha B-crystallin is caused by altered filament interactions and is dependent upon network status in cells
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Desmin aggregate formation by R120G alpha B-crystallin is caused by altered filament interactions and is dependent upon network status in cells

机译:R120GαB-晶状蛋白形成的结蛋白聚集体是由改变的细丝相互作用引起的,并且取决于细胞中的网络状态

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摘要

The R120G mutation in alphaB-crystallin causes desmin-related myopathy. There have been a number of mechanisms proposed to explain the disease process, from altered protein processing to loss of chaperone function. Here, we show that the mutation alters the in vitro binding characteristics of alphaB-crystallin for desmin filaments. The apparent dissociation constant of R120G alphaB-crystallin was decreased while the binding capacity was increased significantly and as a result, desmin filaments aggregated. These data suggest that the characteristic desmin aggregates seen as part of the disease histopathology can be caused by a direct, but altered interaction of R120G alphaB-crystallin with desmin filaments. Transfection studies show that desmin networks in different cell backgrounds are not equally affected. Desmin networks are most vulnerable when they are being made de novo and not when they are already established. Our data also clearly demonstrate the beneficial role of wild-type alphaB-crystallin in the formation of desmin filament networks. Collectively, our data suggest that R120G alphaB-crystallin directly promotes desmin filament aggregation, although this gain of a function can be repressed by some cell situations. Such circumstances in muscle could explain the late onset characteristic of the myopathies caused by mutations in alphaB-crystallin.
机译:alphaB-crystallin中的R120G突变引起结蛋白相关性肌病。从改变的蛋白质加工到伴侣功能丧失,已经提出了许多机制来解释疾病过程。在这里,我们显示该突变改变了desBin细丝的alphaB-crystallin的体外结合特性。 R120G alphaB-crystallin的表观解离常数降低,而结合能力显着提高,结果结蛋白细丝聚集。这些数据表明,作为疾病组织病理学一部分的特异结蛋白聚集体可能是由R​​120G alphaB-晶状蛋白与结蛋白细丝的直接相互作用而引起的。转染研究表明,不同细胞背景中的结蛋白网络受到的影响不同。当从头开始创建Desmin网络时(而不是在已经建立时),它们最容易受到攻击。我们的数据也清楚地证明了野生型αB-晶状体蛋白在结蛋白纤丝网络形成中的有益作用。总体而言,我们的数据表明R120G alphaB-crystallin可直接促进结蛋白丝的聚集,尽管某些细胞情况可能会抑制这种功能的获得。肌肉中的这种情况可以解释由alphaB-crystallin突变引起的肌病的晚期发作特征。

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