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α-晶状体蛋白的伴侣活性调节中间丝组装。

Chaperone activity of alpha-crystallins modulates intermediate filament assembly.

作者信息

Nicholl I D, Quinlan R A

机构信息

Department of Biochemistry, The University, Dundee, UK.

出版信息

EMBO J. 1994 Feb 15;13(4):945-53. doi: 10.1002/j.1460-2075.1994.tb06339.x.

Abstract

Intermediate filaments are generally regarded as one of the most insoluble and resilient cytoskeletal structures of eukaryotic cells. In extracts from the ocular lens, we noticed an unusually high level of vimentin in a soluble, non-filamentous form. Immunoprecipitation of this soluble vimentin resulted in the co-precipitation of alpha-crystallins. The alpha-crystallins are homologous to the small heat shock proteins (sHSPs) and have recently been identified as molecular chaperones, capable of preventing the heat-induced aggregation of proteins. We find that the alpha-crystallins dramatically inhibit the in vitro assembly of GFAP and vimentin in an ATP-independent manner. This inhibition is also independent of the phosphorylation state of the alpha-crystallin polypeptides and each one of the four polypeptides, either alpha A1-, alpha A2-, alpha B1- or alpha B2-crystallin, are equally effective in this inhibition. Furthermore, we show that alpha-crystallins can increase the soluble pool of GFAP when added to preformed filaments. Electron microscopy demonstrated that alpha-crystallin particles could bind to intermediate filaments in a regular fashion, the spacing coinciding with the molecular length of GFAP. This is the first report, as far as we are aware, of a chaperone being involved in intermediate filament assembly and implicates chaperones in the remodeling of intermediate filaments during development and cell differentiation.

摘要

中间丝通常被认为是真核细胞中最不溶性和最具弹性的细胞骨架结构之一。在晶状体提取物中,我们注意到一种可溶性、非丝状形式的波形蛋白水平异常高。对这种可溶性波形蛋白进行免疫沉淀导致α-晶状体蛋白共沉淀。α-晶状体蛋白与小热休克蛋白(sHSPs)同源,最近被鉴定为分子伴侣,能够防止蛋白质的热诱导聚集。我们发现,α-晶状体蛋白以不依赖ATP的方式显著抑制GFAP和波形蛋白的体外组装。这种抑制也与α-晶状体蛋白多肽的磷酸化状态无关,并且四种多肽中的每一种,即αA1-、αA2-、αB1-或αB2-晶状体蛋白,在这种抑制中同样有效。此外,我们表明,当添加到预先形成的丝中时,α-晶状体蛋白可以增加GFAP的可溶性池。电子显微镜显示,α-晶状体蛋白颗粒可以以规则的方式结合到中间丝上,间距与GFAP的分子长度一致。据我们所知,这是关于分子伴侣参与中间丝组装的首次报道,并暗示分子伴侣在发育和细胞分化过程中对中间丝的重塑作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8293/394896/d6f22fac0d50/emboj00052-0218-a.jpg

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