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介体亚基和组蛋白甲基转移酶 Set2 有助于酵母酿酒酵母中 Ino2 依赖性磷脂生物合成的转录激活。

Mediator subunits and histone methyltransferase Set2 contribute to Ino2-dependent transcriptional activation of phospholipid biosynthesis in the yeast Saccharomyces cerevisiae.

机构信息

Institut für Genetik und Funktionelle Genomforschung, Greifswald, Germany.

出版信息

Mol Genet Genomics. 2010 Mar;283(3):211-21. doi: 10.1007/s00438-009-0508-9.

Abstract

To activate eukaryotic genes, several pathways which modify chromatin and recruit general factors of the transcriptional machinery are utilized. We investigated the factors required for activation of yeast phospholipid biosynthetic genes, depending on activator protein Ino2 which binds to the inositol/choline-responsive element (ICRE) upstream promoter motif together with its partner protein Ino4. We used a set of 15 strains each defective for one of the non essential subunits of yeast mediator complex and identified med2, med3, med15, med18 and med19 as impaired for inositol biosynthesis. In these mutants, ICRE-dependent gene activation was reduced to 13-22% of the wild-type level. We also demonstrate synthetic growth and activation defects among mediator mutants and mutants lacking defined histone modifications (snf1, gcn5) and transcriptional coactivators (sub1). Analysis of mutants defective for histone methylation (set1, set2 and dot1) and demethylation (jhd1, jhd2, gis1, rph1 and ecm5) revealed the importance of the H3 Lys36-specific Set2 methyltransferase for ICRE-dependent gene expression. Although defined mediator subunits are critical for gene activation, we could not detect their interaction with Ino2. In contrast, Ino2 directly binds to the Set2 histone methyltransferase. Mapping of interaction domains revealed the importance of the SET core domain which was necessary and sufficient for binding Ino2.

摘要

为了激活真核基因,人们利用了几种修饰染色质并招募转录机制通用因子的途径。我们研究了依赖于激活蛋白 Ino2 的酵母磷脂生物合成基因激活所需的因子,该蛋白与它的伙伴蛋白 Ino4 一起结合到肌醇/胆碱反应元件 (ICRE) 上游启动子基序上。我们使用了一组 15 株酵母中介体复合物非必需亚基中的每一个缺陷的菌株,并鉴定出 med2、med3、med15、med18 和 med19 对肌醇生物合成有缺陷。在这些突变体中,ICRE 依赖性基因激活降低到野生型水平的 13-22%。我们还证明了中介体突变体和缺乏定义的组蛋白修饰(snf1、gcn5)和转录共激活因子(sub1)的突变体之间存在合成生长和激活缺陷。分析组蛋白甲基化(set1、set2 和 dot1)和去甲基化(jhd1、jhd2、gis1、rph1 和 ecm5)缺陷突变体表明,H3 Lys36 特异性 Set2 甲基转移酶对 ICRE 依赖性基因表达至关重要。尽管定义的中介体亚基对于基因激活至关重要,但我们无法检测到它们与 Ino2 的相互作用。相比之下,Ino2 直接与 Set2 组蛋白甲基转移酶结合。相互作用域的映射揭示了 SET 核心结构域的重要性,该结构域对于结合 Ino2 是必要且充分的。

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