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中间丝的相互作用可被热休克蛋白27和αB晶状体蛋白改变。

Intermediate filament interactions can be altered by HSP27 and alphaB-crystallin.

作者信息

Perng M D, Cairns L, van den IJssel P, Prescott A, Hutcheson A M, Quinlan R A

机构信息

Department of Biochemistry, Medical Science Institute, The University, Dundee DD1 5EH, Scotland, UK.

出版信息

J Cell Sci. 1999 Jul;112 ( Pt 13):2099-112. doi: 10.1242/jcs.112.13.2099.

Abstract

HSP27 and alphaB-crystallin are both members of the small heat shock protein family. alphaB-crystalllin has been proposed to modulate intermediate filaments and recently a mutation in alphaB-crystallin has been identified as the genetic basis of desmin related myopathy. This disease is characterised in its pathology by aggregates of intermediate filaments associated with alphaB-crystallin. Here we report that HSP27 like alphaB-crystallin is associated with glial fibrillary acidic protein and vimentin intermediate filament networks in unstressed U373MG astrocytoma cells. HSP27 is also associated with keratin filaments in MCF7 cells, indicating that this association is not restricted to a particular intermediate filament type. The association of sHSPs with both the soluble and filamentous intermediate filament fractions of U373 cells was demonstrated biochemically. Heat shock or drug treatments induced a co-collapse of intermediate filaments and associated small heat shock proteins. These data show that the presence of HSP27 or alphaB-crystallin could not prevent filament collapse and suggest that the purpose of this association is more than just filament binding. Indeed, in U373MG cells the intermediate filament association with small heat shock proteins is similar to that observed for another protein chaperone, HSC70. In order to discern the effect of different chaperone classes on intermediate filament network formation and maintenance, several in vitro assays were assessed. Of these, falling ball viscometry revealed a specific activity of small heat shock proteins compared to HSC70 that was apparently inactive in this assay. Intermediate filaments form a gel in the absence of small heat shock proteins. In contrast, inclusion of alphaB-crystallin or HSP27 prevented gel formation but not filament assembly. The transient transfection of GFAP into MCF7 cells was used to show that the induction of a completely separate network of intermediate filaments resulted in the specific association of the endogenous HSP27 with these new GFAP filaments. These data lead us to propose that one of the major functions of the association of small heat shock proteins with intermediate filaments is to help manage the interactions that occur between filaments in their cellular networks. This is achieved by protecting filaments against those non-covalent interactions that result when they come into very close proximity as seen from the viscosity experiments and which have the potential to induce intermediate filament aggregation as seen in some disease pathologies.

摘要

热休克蛋白27(HSP27)和αB-晶状体蛋白均为小分子热休克蛋白家族成员。有人提出αB-晶状体蛋白可调节中间丝,最近已鉴定出αB-晶状体蛋白中的一种突变是结蛋白相关肌病的遗传基础。该疾病在病理学上的特征是与αB-晶状体蛋白相关的中间丝聚集体。在此我们报告,与αB-晶状体蛋白一样,HSP27在未受应激的U373MG星形细胞瘤细胞中与胶质纤维酸性蛋白和波形蛋白中间丝网络相关。HSP27在MCF7细胞中还与角蛋白丝相关,这表明这种关联并不局限于特定类型的中间丝。通过生化方法证实了小分子热休克蛋白(sHSPs)与U373细胞可溶性和丝状中间丝组分均有关联。热休克或药物处理诱导中间丝和相关小分子热休克蛋白共同解聚。这些数据表明HSP27或αB-晶状体蛋白的存在无法防止丝的解聚,提示这种关联的目的不仅仅是丝的结合。实际上,在U373MG细胞中,中间丝与小分子热休克蛋白的关联类似于另一种蛋白质伴侣HSC70的情况。为了辨别不同伴侣蛋白类别对中间丝网络形成和维持的影响,评估了几种体外试验。其中,落球粘度测定显示小分子热休克蛋白具有特定活性,而HSC70在该试验中显然无活性。在没有小分子热休克蛋白的情况下,中间丝形成凝胶。相反,加入αB-晶状体蛋白或HSP27可防止凝胶形成,但不影响丝的组装。将胶质纤维酸性蛋白(GFAP)瞬时转染到MCF7细胞中,结果表明诱导形成一个完全独立的中间丝网络会导致内源性HSP27与这些新的GFAP丝特异性关联。这些数据使我们提出,小分子热休克蛋白与中间丝关联的主要功能之一是帮助管理细胞网络中丝之间发生的相互作用。这是通过保护丝免受非共价相互作用来实现的,从粘度实验可以看出,当丝非常接近时会产生这种非共价相互作用,并且在某些疾病病理学中可以看到这种相互作用有可能诱导中间丝聚集。

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