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p27(Kip1)基因破坏可使出生后及成年期柯蒂氏器中的细胞增殖。

Gene disruption of p27(Kip1) allows cell proliferation in the postnatal and adult organ of corti.

作者信息

Löwenheim H, Furness D N, Kil J, Zinn C, Gültig K, Fero M L, Frost D, Gummer A W, Roberts J M, Rubel E W, Hackney C M, Zenner H P

机构信息

Department of Otolaryngology, University of Tübingen, Silcherstrasse 5, 72076 Tübingen, Germany.

出版信息

Proc Natl Acad Sci U S A. 1999 Mar 30;96(7):4084-8. doi: 10.1073/pnas.96.7.4084.

Abstract

Hearing loss is most often the result of hair-cell degeneration due to genetic abnormalities or ototoxic and traumatic insults. In the postembryonic and adult mammalian auditory sensory epithelium, the organ of Corti, no hair-cell regeneration has ever been observed. However, nonmammalian hair-cell epithelia are capable of regenerating sensory hair cells as a consequence of nonsensory supporting-cell proliferation. The supporting cells of the organ of Corti are highly specialized, terminally differentiated cell types that apparently are incapable of proliferation. At the molecular level terminally differentiated cells have been shown to express high levels of cell-cycle inhibitors, in particular, cyclin-dependent kinase inhibitors [Parker, S. B., et al. (1995) Science 267, 1024-1027], which are thought to be responsible for preventing these cells from reentering the cell cycle. Here we report that the cyclin-dependent kinase inhibitor p27(Kip1) is selectively expressed in the supporting-cell population of the organ of Corti. Effects of p27(Kip1)-gene disruption include ongoing cell proliferation in postnatal and adult mouse organ of Corti at time points well after mitosis normally has ceased during embryonic development. This suggests that release from p27(Kip1)-induced cell-cycle arrest is sufficient to allow supporting-cell proliferation to occur. This finding may provide an important pathway for inducing hair-cell regeneration in the mammalian hearing organ.

摘要

听力损失通常是由于基因异常、耳毒性损伤和创伤性损伤导致毛细胞变性的结果。在胚胎后期及成年哺乳动物的听觉感觉上皮(柯蒂氏器)中,从未观察到毛细胞再生现象。然而,非哺乳动物的毛细胞上皮能够通过非感觉性支持细胞增殖来再生感觉毛细胞。柯蒂氏器的支持细胞是高度特化的终末分化细胞类型,显然无法增殖。在分子水平上,终末分化细胞已被证明会高水平表达细胞周期抑制剂,尤其是细胞周期蛋白依赖性激酶抑制剂[帕克,S.B.等人(1995年)《科学》267卷,1024 - 1027页],据认为这些抑制剂负责阻止这些细胞重新进入细胞周期。在此我们报告,细胞周期蛋白依赖性激酶抑制剂p27(Kip1)在柯蒂氏器的支持细胞群体中选择性表达。p27(Kip1)基因破坏的影响包括在胚胎发育过程中正常有丝分裂通常已经停止后的时间点,出生后及成年小鼠的柯蒂氏器中持续出现细胞增殖。这表明从p27(Kip1)诱导的细胞周期停滞中释放出来足以使支持细胞发生增殖。这一发现可能为在哺乳动物听觉器官中诱导毛细胞再生提供一条重要途径。

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