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TRANSCRIPTIONAL CONTROL IN NEUROHYPOPHYSIAL NEURONS

TRANSCRIPTIONAL CONTROL IN NEUROHYPOPHYSIAL NEURONS
神经垂体神经元的转录控制
批准号:
6488011
负责人:
JOSEPH T MCCABE
金额:
$2.5万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-09-01 至 2003-08-31

项目摘要

项目成果

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中文摘要
翻译
描述:过去对研究资源的重大投资 25年来卓有成效地展示了中枢神经系统多肽在 生理调节、行为和病理状态。尽管 它们在健康和疾病中公认的重要性相对较少 已经致力于建立分子机制, 调节神经肽的合成。因为这一信息对于 了解它们参与生物功能的长期 这项提议的目的是加深我们对分子的认识 控制神经肽基因转录的机制。 本项目将重点研究四种神经肽的调节: 下丘脑中的加压素、催产素、缩胆囊素和甘丙素 中枢神经垂体系统(NHS)。国民健康保险制度是一项理想的实验 用于确定转录调控的模型系统 上述基因。在神经内分泌和神经内分泌方面具有重要意义。 行为功能(抗利尿、血压控制、压力、 分娩、哺乳和母性行为),这些神经元表现出 对刺激的非常戏剧性的反应。用实验室里的老鼠, 研究表明,身体水分平衡的变化,通过对 饮用盐水溶液或注射高渗盐水,引起 NHS神经元释放所有四种神经肽并改变它们的 多肽合成,表现为信使RNA水平的增加。 在这个项目中,重点将放在基本的亮氨酸拉链家族上 转录因子(bZips,包括因子Fos、Jun和CREB)。 基于bZip转录因子在 调节NHS神经肽的转录,本研究将:1) 通过加压素、催产素、甘丙素和 2)迁移率改变DNA结合分析表明, 在这些基因的启动子区域都有特定的DNA序列 与bZip转录因子相互作用的神经肽基因,以及3) 用体外转染法验证启动子序列在培养细胞中的表达 神经细胞,这些序列对于控制 神经肽基因转录。使用NHS作为一种 模型系统将对这些重要的基因调控具有相关性 多肽在神经内分泌功能以及其他神经系统中的作用 中枢神经系统,在那里有广泛的神经学、内分泌学和 免疫功能归因于这些神经活性物质。
英文摘要
DESCRIPTION: A significant investment of research resources over the past 25 years has fruitfully demonstrated the role of CNS peptides in physiological regulation, behavior, and pathological states. In spite of their recognized importance in health and disease, comparatively little work has been devoted to establishing the molecular mechanisms that regulate neuropeptide synthesis. Since this information is crucial for understanding their participation in biological functions, the long-term objective of this proposal is to further our knowledge of the molecular mechanisms that control the transcription of neuropeptide genes. This project will focus upon the regulation of four neuropeptides: vasopressin oxytocin, cholecystokinin, and galanin, in the hypothalamo- neurohypophysial system (NHS) of the CNS. The NHS is an ideal experimental model system for determining the transcriptional regulation of the aforementioned genes. It is of great importance in neuroendocrine and behavior function (anti-diuresis, blood pressure control, stress, parturition, lactation, and maternal behaviors), and these neurons exhibit a very dramatic response to stimulation. Using the laboratory rat, investigations show that changes in body water balance, by maintenance on drinking solutions of salt water or injection of hypertonic saline, causes NHS neurons to release all four neuropeptides and alter their 'rate' of peptide synthesis, manifested by increases in messenger RNA levels. In this project, the focus will be upon the basic leucine zipper family of transcription factors (bZips, including the factors Fos, Jun an CREB). Based upon the hypothesis that bZip transcription factors play a role in regulating the transcription of NHS neuropeptides, this research will: 1) demonstrate by in situ hybridization of vasopressin, oxytocin, galanin and cholecystokinin genes, 2) show by mobility shift DNA-binding assays that there are specific DNA sequence in the promoter regions of these neuropeptide genes that interact with bZip transcription factors, and 3) demonstrate with in vitro transfection of promoter sequences in cultured neural cells, that these sequences are crucial for the control of neuropeptide gene transcription. What is discovered using the NHS as a model system will have relevance to gene regulation of these important peptides in neuroendocrine function as well as in other neural systems of the CNS, where a wide range of neurological, endocrinological and immunological functions are attributed to these neuroactive substances.
期刊论文(5)
专著(0)
科研奖励(0)
会议论文
Salt-loading increases vasopressin and vasopressin 1b receptor mRNA in the hypothalamus and choroid plexus.
盐负荷会增加下丘脑和脉络丛中的加压素和加压素 1b 受体 mRNA。
DOI: 10.1054/npep.2001.0864
发表时间: 2001
期刊: Neuropeptides.
影响因子: --
作者: [Zemo,DA, McCabe,JT]
通讯作者: McCabe,JT
Transcriptional responses of the rat vasopressin gene to acute and repeated acute osmotic stress.
大鼠加压素基因对急性和反复急性渗透应激的转录反应。
DOI: 10.1016/s0168-0102(02)00079-2
发表时间: 2002
期刊: Neuroscience research
影响因子: 2.9
作者: [Zemo,DavidA, McCabe,JosephT]
通讯作者: McCabe,JosephT
Amelioration of soman-induced neuropathology with NAAG-related compounds
TRANSCRIPTIONAL CONTROL IN NEUROHYPOPHYSIAL NEURONS
TRANSCRIPTIONAL CONTROL IN NEUROHYPOPHYSIAL NEURONS
TRANSCRIPTIONAL CONTROL IN NEUROHYPOPHYSIAL NEURONS
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