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内耳发育中的口袋蛋白与细胞周期调控

Pocket proteins and cell cycle regulation in inner ear development.

作者信息

Rocha-Sanchez Sonia M S, Beisel Kirk W

机构信息

Creighton University School of Dentistry, Dept of Oral Biology, Omaha, NE 68178, USA.

出版信息

Int J Dev Biol. 2007;51(6-7):585-95. doi: 10.1387/ijdb.072387sr.

Abstract

Loss of neurosensory cells of the ear, caused by genetic and non-genetic factors, is becoming an increasing problem as people age, resulting in deafness and vestibular disorders. Unveiling useful mechanisms of cell cycle regulation may offer the possibility to generate new cells out of remaining ones, thus providing the cellular basis to induce new hair cell differentiation in the mammalian ear. Here, we provide an overview of cell cycle regulating genes in general and of those studied in the ear in particular. We categorize those genes into regulators that act upstream of the pocket proteins and into those that act downstream of the pocket proteins. The three members of the pocket protein family essentially determine, through interaction with the eight members of the E2F family, whether or not the cell cycle will progress to the S-phase and thus cell division. The abundant presence of one or more members of these families in adult hair cells supports the notion that inhibition of cell cycle progression through these proteins is a lifelong process. Indeed, manipulating some of those proteins, unfortunately, leads to abortive entry into the cell cycle. Combined with recent success to induce hair cell differentiation through molecular therapy, these approaches may provide a viable strategy to restore lost hair cells in the inner ear.

摘要

随着人们年龄的增长,由遗传和非遗传因素导致的耳部神经感觉细胞丧失正成为一个日益严重的问题,会导致耳聋和前庭功能障碍。揭示细胞周期调控的有用机制可能为从剩余细胞中产生新细胞提供可能性,从而为诱导哺乳动物内耳新毛细胞分化提供细胞基础。在此,我们概述一般的细胞周期调控基因,特别是在耳部研究的那些基因。我们将这些基因分为作用于口袋蛋白上游的调节因子和作用于口袋蛋白下游的调节因子。口袋蛋白家族的三个成员基本上通过与E2F家族的八个成员相互作用,决定细胞周期是否会进入S期从而进行细胞分裂。这些家族的一个或多个成员在成年毛细胞中的大量存在支持了这样一种观点,即通过这些蛋白质抑制细胞周期进程是一个终身过程。事实上,不幸的是,操纵其中一些蛋白质会导致细胞周期的异常进入。结合最近通过分子疗法诱导毛细胞分化的成功,这些方法可能为恢复内耳中丧失的毛细胞提供一种可行的策略。

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