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RB,协调生命、死亡和分化的指挥者。

RB, the conductor that orchestrates life, death and differentiation.

作者信息

Khidr L, Chen P-L

机构信息

Department of Biological Chemistry, University of California-Irvine Med Sci 1, Irvine, CA 92697, USA.

出版信息

Oncogene. 2006 Aug 28;25(38):5210-9. doi: 10.1038/sj.onc.1209612.

Abstract

The retinoblastoma susceptibility gene was the first tumor suppressor gene identified in humans and the first tumor suppressor gene knocked out by targeted deletion in mice. RB serves as a transducer between the cell cycle machinery and promoter-specific transcription factors, its most documented activity being the repression of the E2F family of transcription factors, which regulate the expression of genes involved in cell proliferation and survival. Recent investigations of RB function suggest that it works as a fundamental regulator to coordinate pathways of cellular growth and differentiation. In this review, we unravel the novel role of an equally important aspect of RB in downregulating the differentiation inhibitor EID-1 during cellular differentiation by teasing apart the signal, which elicit differentiation and limit cell cycle progression, since the molecular mechanisms relating to RB activation of differentiation is much less understood. We review the various roles for RB in differentiation of neurons, muscle, adipose tissue, and the retina. In addition, we provide an update for the current models of the role of RB in cell cycle to entry and exit, extending the view toward chromatin remodeling and expose the dichotomies in the regulation of RB family members. We conclude with a discussion of a novel RB regulatory network, incorporating the dynamic contribution of EID family proteins.

摘要

视网膜母细胞瘤易感基因是人类鉴定出的首个肿瘤抑制基因,也是小鼠中通过靶向缺失敲除的首个肿瘤抑制基因。RB作为细胞周期机制与启动子特异性转录因子之间的转导器,其最广为人知的活性是抑制E2F转录因子家族,该家族调节参与细胞增殖和存活的基因的表达。最近对RB功能的研究表明,它作为一种基本调节因子,协调细胞生长和分化途径。在本综述中,我们通过梳理引发分化并限制细胞周期进程的信号,揭示了RB在细胞分化过程中下调分化抑制剂EID-1这一同样重要方面的新作用,因为与RB激活分化相关的分子机制了解较少。我们综述了RB在神经元、肌肉、脂肪组织和视网膜分化中的各种作用。此外,我们更新了RB在细胞周期进入和退出中作用的当前模型,将视角扩展到染色质重塑,并揭示了RB家族成员调节中的二分法。我们最后讨论了一个新的RB调节网络,其中纳入了EID家族蛋白的动态贡献。

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