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制作霉菌。

Making myc.

作者信息

Liu J, Levens D

机构信息

Gene Regulation Section, Laboratory of Pathology, NCI, DCS, Bldg. 10, Rm 2N106, Bethesda, MD 20892-1500, USA.

出版信息

Curr Top Microbiol Immunol. 2006;302:1-32. doi: 10.1007/3-540-32952-8_1.

Abstract

Myc regulates to some degree every major process in the cell. Proliferation, growth, differentiation, apoptosis, and metabolism are all under myc control. In turn, these processes feed back to adjust the level of c-myc expression. Although Myc is regulated at every level from RNA synthesis to protein degradation, c-myc transcription is particularly responsive to multiple diverse physiological and pathological signals. These signals are delivered to the c-myc promoter by a wide variety of transcription factors and chromatin remodeling complexes. How these diverse and sometimes disparate signals are processed to manage the output of the c-myc promoter involves chromatin, recruitment of the transcription machinery, post-initiation transcriptional regulation, and mechanisms to provide dynamic feedback. Understanding these mechanisms promises to add new dimensions to models of transcriptional control and to reveal new strategies to manipulate Myc levels.

摘要

Myc在一定程度上调控细胞内的每一个主要过程。增殖、生长、分化、凋亡和代谢都受Myc的控制。反过来,这些过程又会反馈调节c-myc的表达水平。虽然Myc在从RNA合成到蛋白质降解的各个层面都受到调控,但c-myc转录对多种不同的生理和病理信号特别敏感。这些信号通过各种各样的转录因子和染色质重塑复合物传递到c-myc启动子。这些多样且有时不同的信号是如何被处理以调控c-myc启动子的输出,涉及染色质、转录机制的招募、起始后转录调控以及提供动态反馈的机制。了解这些机制有望为转录控制模型增添新的维度,并揭示操纵Myc水平的新策略。

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