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转录激活的单分子分析:SAGA 共激活因子募集的动力学

Single-molecule analysis of transcription activation: dynamics of SAGA coactivator recruitment.

作者信息

Jeon Jongcheol, Friedman Larry J, Zhou Daniel H, Seo Hogyu David, Adeleke Oluwatobi A, Graham Bria, Patteson Emily F, Gelles Jeff, Buratowski Stephen

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, USA.

Department of Biochemistry, Brandeis University, Waltham, MA, USA.

出版信息

Nat Struct Mol Biol. 2025 Apr;32(4):675-686. doi: 10.1038/s41594-024-01451-y. Epub 2025 Jan 14.

Abstract

Transcription activators are said to stimulate gene expression by 'recruiting' coactivators, yet this vague term fits multiple kinetic models. To directly analyze the dynamics of activator-coactivator interactions, single-molecule microscopy was used to image promoter DNA, a transcription activator and the Spt-Ada-Gcn5 acetyltransferase (SAGA) complex within yeast nuclear extract. SAGA readily but transiently binds nucleosome-free DNA without an activator, while chromatin association occurs primarily when an activator is present. On both templates, an activator increases SAGA association rates by an order of magnitude and dramatically extends occupancy time. These effects reflect sustained interactions with the transactivation domain, as VP16 or Rap1 activation domains produce different SAGA dynamics. SAGA preferentially associates with templates carrying more than one activator. Unexpectedly, SAGA binding is substantially improved by nucleoside triphosphates but not histone H3 or H4 tail tetra-acetylations. Thus, we observe two modes of SAGA-template interaction: short-lived activator-independent binding to non-nucleosomal DNA and tethering to promoter-bound transcription activators for up to several minutes.

摘要

转录激活因子据说通过“招募”共激活因子来刺激基因表达,但这个模糊的术语适用于多种动力学模型。为了直接分析激活因子与共激活因子相互作用的动力学,我们使用单分子显微镜对酵母核提取物中的启动子DNA、转录激活因子和Spt-Ada-Gcn5乙酰转移酶(SAGA)复合物进行成像。SAGA很容易但短暂地结合无核小体的DNA,无需激活因子,而染色质结合主要发生在有激活因子存在时。在两种模板上,激活因子都会使SAGA的结合速率提高一个数量级,并显著延长占据时间。这些效应反映了与反式激活结构域的持续相互作用,因为VP16或Rap1激活结构域会产生不同的SAGA动力学。SAGA优先与携带多个激活因子的模板结合。出乎意料的是,三磷酸核苷可显著改善SAGA的结合,但组蛋白H3或H4尾巴的四乙酰化则不然。因此,我们观察到SAGA与模板相互作用的两种模式:与非核小体DNA的短暂、不依赖激活因子的结合,以及与启动子结合的转录激活因子的长达几分钟的拴系。

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