Role of Set2 and H3 methylation in chromatin function
Role of Set2 and H3 methylation in chromatin function
批准号:
7048571
负责人:
Brian D Strahl
金额:
$24.89万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-05-01 至 2009-08-31
关键词:
chromatinenzyme activityenzyme mechanismgene expressiongene induction /repressiongenetic regulationgenetic screeninghistonesimmunoprecipitationmass spectrometrymethylationmethyltransferasemicroarray technologymolecular siteposttranslational modificationsprotein bindingprotein protein interactionprotein purificationprotein quantitation /detectionprotein structure functionsite directed mutagenesisyeasts
中文摘要
描述(由申请人提供):真核基因表达的调控涉及染色质结构的精确控制。虽然对染色质纤维的操纵以产生和维持不同的功能结构域知之甚少,但组蛋白翻译后修饰显然是这一过程的核心。这个建议的长期目标是阐明组蛋白甲基化在染色质功能中的作用。为了实现这一目标,我们将描述两个独立的组蛋白甲基转移酶(HMT)活动最近在酵母中发现的功能。这些活性之一是Set 2,它是酵母中负责甲基化赖氨酸36(K36)上的组蛋白H3的唯一酶,赖氨酸36是从酵母到人类保守的修饰位点。新的证据表明,Set 2介导的H3 K36甲基化参与葡萄糖抑制,但对这种酶或其甲基化位点知之甚少。鉴于最近对组蛋白甲基化作用的深入了解,我们假设这些酶调节基因表达,部分是通过招募下游调节因子到染色质中的同源甲基化位点。为此,我们将使用生物化学,遗传学和免疫学的组合来定义Set 2中负责基因抑制和组蛋白甲基化的结构域,表征Set 2的相互作用伙伴,鉴定结合K36甲基化H3的蛋白质,并确定H3 K36甲基化与其他组蛋白修饰一起调节受Set 2影响的基因转录的程度。我们还将确定受Set 2/H3 K36甲基化影响的其他染色体区域和细胞通路,以了解这种酶的整体功能。第二种HMT活性尚未鉴定,但已通过色谱法高度纯化。我们将通过生物化学方法鉴定这种酶,并进一步表征其甲基化位点,并确定它们在染色质中发生的程度。由于组蛋白修饰在基于染色质的功能中起着至关重要的作用,因此我们对介导它们的酶及其功能意义的理解的进展可能会对与人类健康和疾病相关的问题产生重大影响。
英文摘要
DESCRIPTION (provided by applicant): Regulation of eukaryotic gene expression involves the precise control of chromatin structure. While the manipulation of the chromatin fiber to create and maintain distinct functional domains is poorly understood, histone post-translational modifications are clearly central to this process. The long-range objective of this proposal is to elucidate roles of histone methylation in chromatin function. To achieve this, we will characterize the functions of two independent histone methyltransferase (HMT) activities recently identified in yeast. One of these activities is Set2, which is the sole enzyme in yeast responsible for methylating histone H3 on lysine 36 (K36), a site of modification conserved from yeast to humans. New evidence suggests that Set2-mediated H3 K36 methylation participates in glucose repression, but little else is known about this enzyme or its methylation site. Given recent insights into the roles of histone methylation, we hypothesize that these enzymes regulate gene expression, in part, through the recruitment of down-stream regulatory factors to their cognate methylation sites in chromatin. To that end, we will use a combination of biochemistry, genetics and immunology to define the domains in Set2 responsible for gene repression and histone methylation, characterize Set2's interacting partners, identify proteins that bind K36-methylated H3 and determine the extent to which H3 K36 methylation functions with other histone modifications to regulate the transcription of a gene affected by Set2. We will also determine other chromosomal regions and cellular pathways affected by Set2/H3 K36 methylation in an effort to understand the global functions of this enzyme. The second HMT activity is not yet identified but has been highly purified by chromatography. We will identify this enzyme by biochemical approaches and further characterize its site(s) of methylation and determine the extent to which they occur in chromatin. Since histone modifications play a vital role in chromatin-based functions, advances in our understanding of the enzymes that mediate them, as well as their functional significance, is likely to have a major impact on issues related to human health and disease.
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会议论文
Mechanisms of chromatin and transcriptional regulation
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批准号:10395985
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资助金额:$56.18万
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Mechanisms of chromatin and transcriptional regulation
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FASEB SRC on Biological Methylation: From DNA and Histones to Disease
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A high-throughput approach towards deciphering the histone code
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A high-throughput approach towards deciphering the histone code
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Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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依托单位:
Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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Role of Set2 and H3 methylation in chromatin function
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负责人:Brian D Strahl
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海外基金