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The desmosome and pemphigus

机译:桥粒和天疱疮

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摘要

Desmosomes are patch-like intercellular adhering junctions (“maculae adherentes”), which, in concert with the related adherens junctions, provide the mechanical strength to intercellular adhesion. Therefore, it is not surprising that desmosomes are abundant in tissues subjected to significant mechanical stress such as stratified epithelia and myocardium. Desmosomal adhesion is based on the Ca2+-dependent, homo- and heterophilic transinteraction of cadherin-type adhesion molecules. Desmosomal cadherins are anchored to the intermediate filament cytoskeleton by adaptor proteins of the armadillo and plakin families. Desmosomes are dynamic structures subjected to regulation and are therefore targets of signalling pathways, which control their molecular composition and adhesive properties. Moreover, evidence is emerging that desmosomal components themselves take part in outside-in signalling under physiologic and pathologic conditions. Disturbed desmosomal adhesion contributes to the pathogenesis of a number of diseases such as pemphigus, which is caused by autoantibodies against desmosomal cadherins. Beside pemphigus, desmosome-associated diseases are caused by other mechanisms such as genetic defects or bacterial toxins. Because most of these diseases affect the skin, desmosomes are interesting not only for cell biologists who are inspired by their complex structure and molecular composition, but also for clinical physicians who are confronted with patients suffering from severe blistering skin diseases such as pemphigus. To develop disease-specific therapeutic approaches, more insights into the molecular composition and regulation of desmosomes are required.
机译:桥粒是膜片样的细胞间粘附连接(“黄斑粘附物”),其与相关的粘附连接一起,为细胞间粘附提供了机械强度。因此,毫不奇怪的是,在承受明显机械应力的组织(例如分层的上皮和心肌)中,桥粒丰富。桥粒附着是基于钙黏着型粘附分子的Ca2 +依赖性,同系和异系互作。桥粒钙粘着蛋白通过犰狳和普通家族的衔接子蛋白锚定在中间丝状细胞骨架上。桥粒是受调节的动态结构,因此是信号通路的靶标,其控制其分子组成和粘附特性。此外,越来越多的证据表明桥粒成分本身在生理和病理条件下参与了由内而外的信号传递。桥粒粘连的紊乱助长了诸如天疱疮等多种疾病的发病机理,这是由针对桥粒钙粘蛋白的自身抗体引起的。除天疱疮外,与桥粒相关的疾病还由其他机制引起,例如遗传缺陷或细菌毒素。由于这些疾病大多数都会影响皮肤,因此,桥粒不仅对细胞生物学家来说是有趣的,这些生物学家因其复杂的结构和分子组成而受到启发,而且对于面对患有严重水疱性皮肤病(如天疱疮)的患者的临床医师也很感兴趣。要开发针对疾病的治疗方法,需要对桥粒的分子组成和调控有更多的了解。

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