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A function for keratins and a common thread among different types of epidermolysis bullosa simplex diseases

机译:不同类型的大疱性表皮松解症疾病中的角蛋白功能和共同作用

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摘要

Previously we demonstrated that transgenic mice expressing a mutant keratin in the basal layer of their stratified squamous epithelia exhibited a phenotype bearing resemblance to a subclass (Dowling Meara) of a heterogeneous group of human skin disorders known as epidermolysis bullosa simplex (EBS) (Vassar, R., P. A. Coulombe, L. Degenstein, K. Albers, E. Fuchs. 1991. Cell. 64:365-380.). The extent to which subtypes of EBS diseases might be genetically related is unknown, although they all exhibit skin blistering as a consequence of basal cell cytolysis. We have now examined transgenic mice expressing a range of keratin mutants which perturb keratin filament assembly to varying degrees. We have generated phenotypes which include most subtypes of EBS, demonstrating for the first time that at least in mice, these diseases can be generated by different mutations within a single gene. A strong correlation existed between the severity of the disease and the extent to which the keratin filament network was disrupted, implicating perturbations in keratin networks as an essential component of these diseases. Some keratin mutants elicited subtle perturbations, with no signs of the tonofilament clumping typical of Dowling-Meara EBS and our previous transgenic mice. Importantly, basal cell cytolysis still occurred, thereby uncoupling cytolysis from the generation of large, insoluble cytoplasmic protein aggregates. Moreover, cell rupture occurred in a narrowly defined subnuclear zone, and seemed to involve three factors: (a) filament perturbation, (b) the columnar shape of the basal cell, and (c) physical trauma. This work provides the best evidence to date for a structural function of a cytoplasmic intermediate filament network, namely to impart mechanical integrity to the cell in the context of its tissue.
机译:先前我们证明,在其分层鳞状上皮的基底层表达突变型角蛋白的转基因小鼠表现出的表型与人类皮肤病异种组的亚类(Dowling Meara)相似,称为人类表皮松解性大疱性单纯疱疹(EBS)(瓦萨尔, R.,PA Coulombe,L.Degenstein,K.Albers,E.Fuchs.1991.Cell.64:365-380。)。 EBS疾病亚型可能与遗传相关的程度尚不清楚,尽管它们都因基底细胞的细胞溶解而表现出皮肤水疱。我们现在检查了表达一系列角蛋白突变体的转基因小鼠,这些突变体会不同程度地干扰角蛋白丝的装配。我们已经产生了包括大多数EBS亚型的表型,这首次证明至少在小鼠中,这些疾病可以由单个基因内的不同突变产生。疾病的严重程度与角蛋白丝网络被破坏的程度之间存在很强的相关性,这意味着角蛋白网络的扰动是这些疾病的重要组成部分。一些角蛋白突变体引起微妙的扰动,没有道林-米亚拉EBS和我们以前的转基因小鼠典型的眼线团块的迹象。重要的是,基底细胞仍然发生细胞溶解,从而使细胞溶解与大的不溶性细胞质蛋白聚集体的产生脱钩。此外,细胞破裂发生在狭窄的亚核区,似乎涉及三个因素:(a)细丝扰动,(b)基底细胞的柱状,以及(c)身体创伤。这项工作迄今为止为细胞质中间丝网络的结构功能提供了最佳证据,即在组织范围内赋予细胞机械完整性。

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