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p27(Kip1)将细胞增殖与发育中的柯蒂氏器的形态发生联系起来。

p27(Kip1) links cell proliferation to morphogenesis in the developing organ of Corti.

作者信息

Chen P, Segil N

机构信息

Department of Cell and Molecular Biology, House Ear Institute, Los Angeles, CA 90057, USA.

出版信息

Development. 1999 Apr;126(8):1581-90. doi: 10.1242/dev.126.8.1581.

Abstract

Strict control of cellular proliferation is required to shape the complex structures of the developing embryo. The organ of Corti, the auditory neuroepithelium of the inner ear in mammals, consists of two types of terminally differentiated mechanosensory hair cells and at least four types of supporting cells arrayed precisely along the length of the spiral cochlea. In mice, the progenitors of greater than 80% of both hair cells and supporting cells undergo their terminal division between embryonic day 13 (E13) and E14. As in humans, these cells persist in a non-proliferative state throughout the adult life of the animal. Here we report that the correct timing of cell cycle withdrawal in the developing organ of Corti requires p27(Kip1), a cyclin-dependent kinase inhibitor that functions as an inhibitor of cell cycle progression. p27(Kip1) expression is induced in the primordial organ of Corti between E12 and E14, correlating with the cessation of cell division of the progenitors of the hair cells and supporting cells. In wild-type animals, p27(Kip1) expression is downregulated during subsequent hair cell differentiation, but it persists at high levels in differentiated supporting cells of the mature organ of Corti. In mice with a targeted deletion of the p27(Kip1) gene, proliferation of the sensory cell progenitors continues after E14, leading to the appearance of supernumerary hair cells and supporting cells. In the absence of p27(Kip1), mitotically active cells are still observed in the organ of Corti of postnatal day 6 animals, suggesting that the persistence of p27(Kip1) expression in mature supporting cells may contribute to the maintenance of quiescence in this tissue and, possibly, to its inability to regenerate. Homozygous mutant mice are severely hearing impaired. Thus, p27(Kip1) provides a link between developmental control of cell proliferation and the morphological development of the inner ear.

摘要

严格控制细胞增殖对于塑造发育中胚胎的复杂结构至关重要。柯蒂氏器是哺乳动物内耳的听觉神经上皮,由两种终末分化的机械感觉毛细胞和至少四种支持细胞组成,这些细胞沿着螺旋形耳蜗的长度精确排列。在小鼠中,超过80%的毛细胞和支持细胞的祖细胞在胚胎第13天(E13)和E14之间进行终末分裂。与人类一样,这些细胞在动物成年后的整个生命过程中都处于非增殖状态。我们在此报告,柯蒂氏器发育过程中细胞周期退出的正确时间需要p27(Kip1),一种细胞周期蛋白依赖性激酶抑制剂,它作为细胞周期进程的抑制剂发挥作用。p27(Kip1)在E12和E14之间的原始柯蒂氏器中被诱导表达,这与毛细胞和支持细胞祖细胞的细胞分裂停止相关。在野生型动物中,p27(Kip1)的表达在随后的毛细胞分化过程中下调,但在成熟柯蒂氏器的分化支持细胞中仍高水平持续存在。在p27(Kip1)基因靶向缺失的小鼠中,感觉细胞祖细胞在E14后继续增殖,导致出现额外的毛细胞和支持细胞。在缺乏p27(Kip1)的情况下,在出生后第6天动物的柯蒂氏器中仍可观察到有丝分裂活跃的细胞,这表明成熟支持细胞中p27(Kip1)表达的持续存在可能有助于维持该组织的静止状态,并可能导致其无法再生。纯合突变小鼠严重听力受损。因此,p27(Kip1)在细胞增殖的发育控制与内耳的形态发育之间建立了联系。

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