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Myc蛋白的稳定池和不稳定池存在于人类细胞中。

Stable and unstable pools of Myc protein exist in human cells.

作者信息

Tworkowski Kathryn A, Salghetti Simone E, Tansey William P

机构信息

Molecular and Cellular Biology Program, State University of New York at Stony Brook, 11794, USA.

出版信息

Oncogene. 2002 Dec 5;21(55):8515-20. doi: 10.1038/sj.onc.1205976.

Abstract

The oncoprotein transcription factor Myc plays a crucial role in the control of cell growth and proliferation. Consistent with its potent growth-promoting properties, cells have evolved a number of mechanisms to limit the activity and accumulation of the Myc protein. One of the most striking of these mechanisms is ubiquitin (Ub)-mediated proteolysis, which typically destroys Myc within minutes of its synthesis. Here we show that, despite the extreme instability of the Myc protein, cells contain a pool of Myc that is metabolically stable. Entry of Myc into the stable pool is signaled by an element within the carboxy-terminus of the protein, and is a cell-specific process that is regulated during mitosis and by interaction with Max. These data demonstrate that - even for a rapidly turned-over protein such as Myc - metabolically stable and unstable forms of a protein can co-exist in cells, and suggest that the rate of destruction of Myc molecules is linked to their specific functions.

摘要

癌蛋白转录因子Myc在细胞生长和增殖的控制中起着关键作用。与其强大的促生长特性相一致,细胞已经进化出多种机制来限制Myc蛋白的活性和积累。其中最显著的机制之一是泛素(Ub)介导的蛋白水解,它通常在Myc合成后几分钟内将其破坏。在这里我们表明,尽管Myc蛋白极其不稳定,但细胞中仍存在一批代谢稳定的Myc。Myc进入稳定池是由该蛋白羧基末端的一个元件发出信号的,并且是一个细胞特异性过程,在有丝分裂期间以及通过与Max相互作用进行调节。这些数据表明,即使对于像Myc这样快速周转的蛋白质,蛋白质的代谢稳定和不稳定形式也可以在细胞中共存,并表明Myc分子的破坏速率与其特定功能相关。

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