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生长迟缓、桥粒黏附丧失及紧密连接功能受损揭示了桥粒斑蛋白1在体内的独特作用。

Growth Retardation, Loss of Desmosomal Adhesion, and Impaired Tight Junction Function Identify a Unique Role of Plakophilin 1 In Vivo.

作者信息

Rietscher Katrin, Wolf Annika, Hause Gerd, Rother Annekatrin, Keil René, Magin Thomas M, Glass Markus, Niessen Carien M, Hatzfeld Mechthild

机构信息

Institute of Molecular Medicine, Division of Pathobiochemistry, Martin Luther University Halle-Wittenberg, Halle, Germany.

Biocenter, Electron Microscopy, Martin Luther University Halle-Wittenberg, Halle, Germany.

出版信息

J Invest Dermatol. 2016 Jul;136(7):1471-1478. doi: 10.1016/j.jid.2016.03.021. Epub 2016 Mar 28.

Abstract

Desmosomes mediate strong intercellular adhesion through desmosomal cadherins that interact with intracellular linker proteins including plakophilins (PKPs) 1-3 to anchor the intermediate filaments. PKPs show overlapping but distinct expression patterns in the epidermis. So far, the contribution of individual PKPs in differentially regulating desmosome function is incompletely understood. To resolve the role of PKP1 we ablated the PKP1 gene. Here, we report that PKP1(-/-) mice were born at the expected mendelian ratio with reduced birth weight, but they otherwise appeared normal immediately after birth. However, their condition rapidly declined, and the mice died within 24 hours, developing fragile skin with lesions in the absence of obvious mechanical trauma. This was accompanied by sparse and small desmosomes. Newborn PKP1(-/-) mice showed disturbed tight junctions with an impaired inside-out barrier, whereas the outside-in barrier was unaffected. Keratinocytes isolated from these mice showed strongly reduced intercellular cohesion, delayed tight junction formation, and reduced transepithelial resistance and reduced proliferation rates. Our study shows a nonredundant and essential role of PKP1 in desmosome and tight junction function and supports a role of PKP1 in growth control, a function that is crucial in wound healing and epidermal carcinogenesis.

摘要

桥粒通过桥粒钙黏蛋白介导强细胞间黏附,桥粒钙黏蛋白与包括桥粒斑蛋白(PKPs)1 - 3在内的细胞内连接蛋白相互作用,以锚定中间丝。PKPs在表皮中表现出重叠但不同的表达模式。到目前为止,单个PKPs在差异调节桥粒功能中的作用尚未完全了解。为了解决PKP1的作用,我们敲除了PKP1基因。在此,我们报告PKP1(- / -)小鼠以预期的孟德尔比例出生,出生体重降低,但出生后立即看起来正常。然而,它们的状况迅速恶化,小鼠在24小时内死亡,出现脆弱的皮肤且有损伤,无明显机械创伤。这伴随着稀疏且小的桥粒。新生PKP1(- / -)小鼠表现出紧密连接紊乱,由内向外的屏障受损,而由外向内的屏障未受影响。从这些小鼠分离的角质形成细胞显示细胞间黏附力显著降低、紧密连接形成延迟、经上皮电阻降低以及增殖率降低。我们的研究表明PKP1在桥粒和紧密连接功能中具有非冗余且必不可少的作用,并支持PKP1在生长控制中的作用,这一功能在伤口愈合和表皮癌发生中至关重要。

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