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通过在培养的人遗传性大疱性表皮松解症(EBS)角质形成细胞中稳定表达结蛋白来补充突变角蛋白。

Supplementation of a mutant keratin by stable expression of desmin in cultured human EBS keratinocytes.

作者信息

Magin T M, Kaiser H W, Leitgeb S, Grund C, Leigh I M, Morley S M, Lane E B

机构信息

Institute of Genetics and Bonner Forum Biomedizin, University of Bonn, Roemerstrasse 164, Germany.

出版信息

J Cell Sci. 2000 Dec;113 Pt 23:4231-9. doi: 10.1242/jcs.113.23.4231.

Abstract

Mutations in keratin genes give rise to a number of inherited skin fragility disorders, demonstrating that the intermediate filament cytoskeleton has an essential function in maintaining the structural integrity of epidermis and its appendages. Epidermolysis bullosa simplex (EBS) is an autosomal dominant disorder caused by mutations in keratins K5 or K14, which are expressed in the basal layer of stratified epithelia. Using a keratinocyte cell line established from an EBS patient, we investigated whether the muscle-specific intermediate filament protein desmin would be able to functionally complement a mutant keratin 14 in cultured keratinocytes. We show that in stably transfected EBS cells, desmin forms an extended keratin-independent cytoskeleton. Immunogold-EM analysis demonstrated that in the presence of numerous keratin filaments attached to desmosomes, desmin could nevertheless interact with desmosomes in the same cell, indicating the dynamic nature of the filament-desmosome association. When desmin-transfected cells were subjected to heat shock, the mutant keratin filaments showed a transient collapse while desmin filaments were maintained. Thus the defective keratin filaments and the wild-type desmin filaments appear to coexist in cells without interference. Expression of a type III intermediate filament protein like desmin may offer a strategy for the treatment of patients suffering from epidermal keratin mutations.

摘要

角蛋白基因的突变会引发多种遗传性皮肤脆性疾病,这表明中间丝细胞骨架在维持表皮及其附属器的结构完整性方面具有重要功能。单纯性大疱性表皮松解症(EBS)是一种常染色体显性疾病,由角蛋白K5或K14的突变引起,这些角蛋白在复层上皮的基底层表达。利用从一名EBS患者建立的角质形成细胞系,我们研究了肌肉特异性中间丝蛋白结蛋白是否能够在培养的角质形成细胞中在功能上补充突变的角蛋白14。我们发现,在稳定转染的EBS细胞中,结蛋白形成了一种扩展的不依赖角蛋白的细胞骨架。免疫金电镜分析表明,在存在大量附着于桥粒的角蛋白丝的情况下,结蛋白仍能与同一细胞中的桥粒相互作用,这表明丝-桥粒结合具有动态性。当对转染了结蛋白的细胞进行热休克处理时,突变的角蛋白丝会出现短暂塌陷,而结蛋白丝则得以维持。因此,有缺陷的角蛋白丝和野生型结蛋白丝似乎在细胞中共存而互不干扰。像结蛋白这样的III型中间丝蛋白的表达可能为治疗患有表皮角蛋白突变的患者提供一种策略。

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