North A J, Chidgey M A, Clarke J P, Bardsley W G, Garrod D R
Epithelial Morphogenesis Research Group, School of Biological Sciences, University of Manchester, United Kingdom.
Proc Natl Acad Sci U S A. 1996 Jul 23;93(15):7701-5. doi: 10.1073/pnas.93.15.7701.
The adhesive core of the desmosome is composed of cadherin-like glycoproteins of two families, desmocollins and desmogleins. Three isoforms of each are expressed in a tissue-specific and developmentally regulated pattern. In bovine nasal epidermis, the three desmocollin (Dsc) isoforms are expressed in overlapping domains; Dsc3 expression is strongest in the basal layer, while Dsc2 and Dsc1 are strongly expressed in the suprabasal layers. Herein we have investigated whether different isoforms are assembled into the same or distinct desmosomes by performing double immunogold labeling using isoform-specific antibodies directed against Dsc1 and Dsc3. The results show that individual desmosomes harbor both isoforms in regions where their expression territories overlap. Quantification showed that the ratio of the proteins in each desmosome altered gradually from basal to immediately suprabasal and upper suprabasal layers, labeling for Dsc1 increasing and Dsc3 decreasing. Thus desmosomes are constantly modified as cells move up the epidermis, with continuing turnover of the desmosomal glycoproteins. Statistical analysis of the quantitative data showed a possible relationship between the distributions of the two isoforms. This gradual change in desmosomal composition may constitute a vertical adhesive gradient within the epidermis, having important consequences for cell positioning and differentiation.
桥粒的黏附核心由两个家族的钙黏蛋白样糖蛋白组成,即桥粒芯胶蛋白和桥粒芯糖蛋白。每个家族的三种异构体以组织特异性和发育调控的模式表达。在牛鼻表皮中,三种桥粒芯胶蛋白(Dsc)异构体在重叠区域表达;Dsc3在基底层表达最强,而Dsc2和Dsc1在上基底层强烈表达。在此,我们通过使用针对Dsc1和Dsc3的异构体特异性抗体进行双重免疫金标记,研究了不同异构体是否组装到相同或不同的桥粒中。结果表明,在其表达区域重叠的区域,单个桥粒同时含有这两种异构体。定量分析表明,每个桥粒中蛋白质的比例从基底层到紧邻上基底层和上基底层逐渐变化,Dsc1的标记增加而Dsc3的标记减少。因此,随着细胞向上迁移至表皮,桥粒不断被修饰,桥粒糖蛋白持续更新。对定量数据的统计分析表明,这两种异构体的分布之间可能存在关联。桥粒组成的这种逐渐变化可能在表皮内构成垂直黏附梯度,对细胞定位和分化具有重要影响。