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作为基因组划分者的一般调控因子(GRFs)。

General regulatory factors (GRFs) as genome partitioners.

作者信息

Fourel Genevieve, Miyake Tsuyoshi, Defossez Pierre-Antoine, Li Rong, Gilson Eric

机构信息

CNRS/ENSL 5665, Ecole Normale Supérieure de Lyon, 46 Allée d'Italie, France.

出版信息

J Biol Chem. 2002 Nov 1;277(44):41736-43. doi: 10.1074/jbc.M202578200. Epub 2002 Aug 27.

Abstract

Insulators are sequences that uncouple adjacent chromosome domains. Here we have shown that Saccharomyces cerevisiae Rap1p and Abf1p proteins are endowed with a potent insulating capacity. Insulating domains in Rap1p coincide with previously described transcription activation domains, whereas four adjacent subdomains spanning the whole of the Abf1p C terminus (440-731) were found to display autonomous insulating capacity. That both Rap1p and Abf1p silencing domains either contain or largely overlap with an insulating domain suggests that insulation conveys some undefined chromosome organization capacity that also contributes a function in silencing. Together with Reb1p and Tbf1p, previously involved in the activity of Saccharomyces cerevisiae subtelomeric insulators, insulating potential emerges as a supplementary common property of General Regulatory Factors (GRFs). Thus GRFs, which bind to sites scattered throughout the genome within promoters, would not only play a key role in regulating gene expression but also partition the genome in functionally independent domains.

摘要

绝缘子是使相邻染色体结构域解偶联的序列。我们在此表明,酿酒酵母Rap1p和Abf1p蛋白具有强大的绝缘能力。Rap1p中的绝缘结构域与先前描述的转录激活结构域一致,而跨越Abf1p整个C末端(440 - 731)的四个相邻亚结构域被发现具有自主绝缘能力。Rap1p和Abf1p的沉默结构域要么包含绝缘结构域,要么与之大量重叠,这表明绝缘传递了一些未明确的染色体组织能力,这种能力也在沉默中发挥作用。与先前参与酿酒酵母亚端粒绝缘子活性的Reb1p和Tbf1p一起,绝缘潜力成为一般调控因子(GRFs)的一种补充共同特性。因此,与启动子内散布于整个基因组的位点结合的GRFs,不仅在调节基因表达中起关键作用,还将基因组划分成功能独立的结构域。

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