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The Mechanism of Transcriptional Repression by Hairless

The Mechanism of Transcriptional Repression by Hairless
Hairless 的转录抑制机制
批准号:
6801437
负责人:
GERARD MJ BEAUDOIN III
金额:
$4.11万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
未结题
起止时间:
2002-09-01 至

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GERARD MJ BEAUDOIN III的其他基金

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中文摘要
翻译
描述(由申请人提供):在人类中,围产期甲状腺激素(TH)缺乏导致神经系统发育缺陷,包括智力迟钝。TH通过结合核受体(TR)起作用,控制基因转录。因此,TH通过诱导TH反应基因调节发育。无毛(hr)已被确定为在大脑中表达的促肾上腺素反应基因,因此可能参与促肾上腺素导向的神经系统发育。我们的实验室最近将Hr的生化功能定义为一种可以通过TR起作用的辅抑制因子。辅抑制因子是一种可以通过DNA结合的转录因子抑制转录的蛋白质。因此,该蛋白的生化特性揭示了Hr可能参与了TR的转录作用机制。本研究的目的是研究基于Hr的转录抑制机制,因为这将有助于更好地了解TR如何作为转录调节剂发挥作用,以及TR如何通过Hr的募集影响神经系统的发育。我将以三种方式研究基于人力资源的压抑:1)确定每个压抑域在基于人力资源的压抑中的作用;2)确定Hr抑制域招募的蛋白;3)证明hr相互作用蛋白参与基于hr的抑制。通过识别hr介导的转录抑制的分子机制,我们可能会发现治疗设计的新途径,以对抗由于基因表达改变而导致的智力迟钝。
英文摘要
DESCRIPTION (provided by applicant): In humans, perinatal thyroid hormone (TH) deficiency results in developmental defects that in the nervous system includes mental retardation. TH acts through binding nuclear receptors (TR), which can control gene transcription. Thus, TH regulates development through induction of TH-responsive genes. hairless (hr) has been identified as a TH-responsive gene expressed in the brain, and thus is potentially involved in TH directed development of the nervous system.Our lab has recently defined the biochemical function of Hr as a corepressor that can act through TR. Corepressors are proteins that can repress transcription via a DNA bound transcription factor. Thus, the biochemical characterization of the protein has revealed that Hr may be involved in the mechanism of TR's transcriptional action. The purpose of the proposed research is to investigate the mechanism of Hr-based transcriptional repression, as this will lead to a greater understanding of how TR functions as a transcriptional regulator and how TR, through the recruitment of Hr, may affect nervous system development. I shall investigate Hr-based repression in three ways: 1) Determine the role of each of the repression domains in Hr-based repression; 2) Identify proteins that are recruited by Hr repression domains; 3) Demonstrate that the Hr-interacting protein is involved in Hr-based repression. By discerning the molecular mechanisms of Hr-mediated transcriptional repression, we may discover new avenues for therapeutic design to combat mental retardation as a consequence of altered gene expression.
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The Mechanism of Transcriptional Repression by Hairless