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在产前和成年小鼠分层上皮中对网蛋白进行条件性靶向会导致角质形成细胞脆弱和损伤性表皮屏障缺陷。

Conditional targeting of plectin in prenatal and adult mouse stratified epithelia causes keratinocyte fragility and lesional epidermal barrier defects.

作者信息

Ackerl Reinhard, Walko Gernot, Fuchs Peter, Fischer Irmgard, Schmuth Matthias, Wiche Gerhard

机构信息

Department of Molecular Cell Biology, Max F. Perutz Laboratories, University of Vienna, 1030 Vienna, Austria.

出版信息

J Cell Sci. 2007 Jul 15;120(Pt 14):2435-43. doi: 10.1242/jcs.004481.

Abstract

Plectin, a widespread intermediate filament-based cytolinker protein capable of interacting with a variety of cytoskeletal structures and plasma membrane-bound junctional complexes, serves essential functions in maintenance of cell and tissue cytoarchitecture. We have generated a mouse line bearing floxed plectin alleles and conditionally deleted plectin in stratified epithelia. This strategy enabled us to study the consequences of plectin deficiency in this particular type of tissues in the context of the whole organism without plectin loss affecting other tissues. Conditional knockout mice died early after birth, showing signs of starvation and growth retardation. Blistering was observed on their extremities and on the oral epithelium after initial nursing, impairing food uptake. Knockout epidermis was very fragile and showed focal epidermal barrier defects caused by the presence of small skin lesions. Stratification, proliferation and differentiation of knockout skin seemed unaffected by epidermis-restricted plectin deficiency. In an additionally generated mouse model, tamoxifen-induced Cre-ER(T)-mediated recombination led to mice with a mosaic plectin deletion pattern in adult epidermis, combined with microblister formation and epidermal barrier defects. Our study explains the early lethality of plectin-deficient mice and provides a model to ablate plectin in adult animals which could be used for developing gene or pharmacological therapies.

摘要

网蛋白是一种广泛存在的基于中间丝的细胞连接蛋白,能够与多种细胞骨架结构和质膜结合的连接复合体相互作用,在维持细胞和组织的细胞结构方面发挥着重要作用。我们构建了一个带有floxed网蛋白等位基因的小鼠品系,并在复层上皮中条件性删除网蛋白。这种策略使我们能够在不影响其他组织的情况下,在整个生物体的背景下研究网蛋白缺乏在这种特定类型组织中的后果。条件性敲除小鼠在出生后不久死亡,表现出饥饿和生长迟缓的迹象。在初次哺乳后,其四肢和口腔上皮出现水疱,影响食物摄取。敲除小鼠的表皮非常脆弱,由于存在小的皮肤损伤而出现局部表皮屏障缺陷。敲除小鼠皮肤的分层、增殖和分化似乎不受表皮限制性网蛋白缺乏的影响。在另外构建的小鼠模型中,他莫昔芬诱导的Cre-ER(T)介导的重组导致成年表皮中网蛋白缺失呈镶嵌模式的小鼠,伴有微水疱形成和表皮屏障缺陷。我们的研究解释了网蛋白缺陷小鼠的早期致死性,并提供了一种在成年动物中敲除网蛋白的模型,可用于开发基因或药物疗法。

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