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表达突变桥粒钙黏蛋白的小鼠在桥粒、增殖和表皮分化方面表现出异常。

Mice expressing a mutant desmosomal cadherin exhibit abnormalities in desmosomes, proliferation, and epidermal differentiation.

作者信息

Allen E, Yu Q C, Fuchs E

机构信息

Howard Hughes Medical Institute, Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637, USA.

出版信息

J Cell Biol. 1996 Jun;133(6):1367-82. doi: 10.1083/jcb.133.6.1367.

Abstract

Desmogleins are members of the cadherin superfamily which form the core of desmosomes. In vitro studies indicate that the cytoplasmic domain of desmogleins associates with plakoglobin; however, little is known about the role of this domain in desmosome recognition or assembly in vivo, or about the possible relation of desmoglein mutations to epidermal differentiation and disease. To address these questions we used transgenic mouse technology to produce an NH2-terminally truncated desmoglein (Pemphigus Vulgaris Antigen or Dsg3) in cells known to express its wild-type counterpart. Within 2 d, newborn transgenic animals displayed swelling of their paws, flakiness on their back, and blackening of the tail tip. When analyzed histologically and ultrastructurally, widening of intercellular spaces and disruption of desmosomes were especially striking in the paws and tail. Desmosomes were reduced dramatically in number and were smaller and often peculiar in structure. Immunofluorescence and immunoelectron microscopy revealed no major abnormalities in localization of hemidesmosomal components, but desmosomal components organized aberrantly, resulting in a loss of ultrastructure within the plaque. In regions where desmosome loss was prevalent but where some adhesive structures persisted, the epidermis was thickened, with a marked increase in spinous and stratum corneum layers, variability in granular layer thickness, and parakeratosis in some regions. Intriguingly, a dramatic increase in cell proliferation was also observed concomitant with biochemical changes, including alterations in integrin expression, known to be associated with hyperproliferation. An inflammatory response was also detected in some skin regions. Collectively, these findings demonstrate that a mutation in a desmoglein can perturb epidermal cell-cell adhesion, triggering a cascade of changes in the skin.

摘要

桥粒芯糖蛋白是钙黏蛋白超家族的成员,构成桥粒的核心。体外研究表明,桥粒芯糖蛋白的胞质结构域与桥粒斑珠蛋白相关联;然而,关于该结构域在体内桥粒识别或组装中的作用,或者桥粒芯糖蛋白突变与表皮分化和疾病的可能关系,人们知之甚少。为了解决这些问题,我们利用转基因小鼠技术在已知表达其野生型对应物的细胞中产生了一种氨基末端截短的桥粒芯糖蛋白(寻常型天疱疮抗原或Dsg3)。在2天内,新生转基因动物的爪子出现肿胀,背部出现片状剥落,尾巴尖端变黑。当进行组织学和超微结构分析时,细胞间隙增宽和桥粒破坏在爪子和尾巴中尤为明显。桥粒数量显著减少,体积变小,结构常常怪异。免疫荧光和免疫电子显微镜检查显示半桥粒成分的定位没有重大异常,但桥粒成分排列异常,导致板块内超微结构丧失。在桥粒丧失普遍但仍有一些黏附结构存在的区域,表皮增厚,棘层和角质层明显增加,颗粒层厚度变化,一些区域出现角化不全。有趣的是,还观察到细胞增殖显著增加,同时伴有生化变化,包括整合素表达的改变,已知这与过度增殖有关。在一些皮肤区域也检测到炎症反应。总的来说,这些发现表明桥粒芯糖蛋白的突变会扰乱表皮细胞间黏附,引发皮肤中的一系列变化。

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