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Id1通过对p16/Ink4a的转录抑制来调控细胞衰老。

Id1 regulation of cellular senescence through transcriptional repression of p16/Ink4a.

作者信息

Alani R M, Young A Z, Shifflett C B

机构信息

Oncology Center, Johns Hopkins University School of Medicine, Bunting-Blaustein Cancer Research Building, 1650 Orleans Street, Room 336, Baltimore, MD 21231-1000, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):7812-6. doi: 10.1073/pnas.141235398. Epub 2001 Jun 26.

Abstract

The Id family of helix-loop-helix (HLH) transcriptional regulatory proteins does not possess a basic DNA-binding domain and functions as a negative regulator of basic HLH transcription factors. Id proteins coordinate cell growth and differentiation pathways within mammalian cells and have been shown to regulate G(1)-S cell-cycle transitions. Although much recent data has implicated Id1 in playing a critical role in modulating cellular senescence, no direct genetic evidence has been reported to substantiate such work. Here we show that Id1-null primary mouse embryo fibroblasts undergo premature senescence despite normal growth profiles at early passage. These cells possess increased expression of the tumor-suppressor protein p16/Ink4a but not p19/ARF, and have decreased cyclin-dependent kinase (cdk) 2 and cdk4 kinase activity. We also show that Id1 is able to directly inhibit p16/Ink4a but not p19/ARF promoter activity via its HLH domain, and that Id1 inhibits transcriptional activation at E-boxes within the p16/Ink4a promoter. Our data provide, to our knowledge, the first genetic evidence for a role for Id1 as an inhibitor of cellular senescence and suggest that Id1 functions to delay cellular senescence through repression of p16/Ink4a. Because epigenetic and genetic abrogation of p16/Ink4a function has been implicated in the evolution of several human malignancies, we propose that transcriptional regulation of p16/Ink4a may also provide a mechanism for the dysregulation of normal cellular growth controls during the evolution of human malignancies.

摘要

螺旋-环-螺旋(HLH)转录调节蛋白的Id家族不具备碱性DNA结合结构域,而是作为碱性HLH转录因子的负调节因子发挥作用。Id蛋白协调哺乳动物细胞内的细胞生长和分化途径,并已被证明可调节G(1)-S细胞周期转换。尽管最近有许多数据表明Id1在调节细胞衰老中起关键作用,但尚未有直接的遗传学证据来证实此类研究。在此,我们表明Id1基因敲除的原代小鼠胚胎成纤维细胞尽管在早期传代时生长曲线正常,但仍会过早衰老。这些细胞中肿瘤抑制蛋白p16/Ink4a的表达增加,而p19/ARF的表达未增加,并且细胞周期蛋白依赖性激酶(cdk)2和cdk4的激酶活性降低。我们还表明,Id1能够通过其HLH结构域直接抑制p16/Ink4a的启动子活性,但不能抑制p19/ARF的启动子活性,并且Id1抑制p16/Ink4a启动子内E盒处的转录激活。据我们所知,我们的数据首次提供了Id1作为细胞衰老抑制剂作用的遗传学证据,并表明Id1通过抑制p16/Ink4a来延迟细胞衰老。由于p16/Ink4a功能的表观遗传和基因缺失与几种人类恶性肿瘤的发生发展有关,我们提出p16/Ink4a的转录调节也可能为人类恶性肿瘤发生发展过程中正常细胞生长控制失调提供一种机制。

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Id1 regulation of cellular senescence through transcriptional repression of p16/Ink4a.Id1通过对p16/Ink4a的转录抑制来调控细胞衰老。
Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):7812-6. doi: 10.1073/pnas.141235398. Epub 2001 Jun 26.

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