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GENETIC ANALYSIS OF NICOTINE ADAPTATION IN C ELEGANS

GENETIC ANALYSIS OF NICOTINE ADAPTATION IN C ELEGANS
线虫尼古丁适应的遗传分析
批准号:
6702556
负责人:
WILLIAM R SCHAFER
金额:
$27.06万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-02-01 至 2006-12-31

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中文摘要
翻译
烟草的使用与多种人类疾病有关,包括心脏病、肺气肿和癌症,这些疾病每年共同导致数百万人过早死亡。 尼古丁的成瘾特性是持续和强迫性烟草使用的主要原因。 尼古丁成瘾被认为是由于大脑中烟碱乙酰胆碱受体的活性和表达的长期适应性变化。然而,这些适应性过程背后的分子和神经机制仍然知之甚少。本研究的目的是在一个简单的动物模型,线虫秀丽隐杆线虫,使用遗传分析,研究尼古丁适应的分子基础。 C.线虫非常适合于神经系统功能的分子分析:它具有简单和良好表征的神经系统,并且其短的世代时间、小且大部分测序的基因组以及可进行生殖系转化使其成为经典和分子遗传学研究的理想对象。 C.线虫对尼古丁有显著的、易于测量的反应,长期暴露于尼古丁会导致神经肌肉和神经元烟碱受体控制的行为产生尼古丁耐受和依赖。 在这个项目中,线虫尼古丁适应所需的基因将通过筛选适应缺陷突变体来确定。 在早期筛选中确定的两个尼古丁适应基因将被克隆,以确定其分子功能,并表征其发挥作用的细胞途径。 蛋白激酶C缺陷突变体的研究表明,PKC磷酸化的烟碱受体亚基是尼古丁适应的机制的可能性,将通过分析表达突变受体的转基因蠕虫进行测试。 这项工作的最终目标是为神经元中尼古丁适应的一般分子机制提供模型,并确定参与其他动物(包括脊椎动物)尼古丁成瘾的新蛋白质。
英文摘要
Tobacco use has been implicated in a wide range of human diseases, including heart disease, emphysema, and cancer, which together result in millions of premature deaths each year. The addictive properties of nicotine are a major cause of persistent and compulsive tobacco use. Nicotine addiction is thought to result from long-term adaptive changes in the activity and expression of nicotinic acetylcholine receptors in the brain. However, the molecular and neuronal mechanisms that underlie these adaptive processes remain poorly understood. The goal of this research is to use genetic analysis in a simple animal model, the nematode Caenorhabditis elegans, to investigate the molecular basis of nicotine adaptation. C. elegans is highly amenable to molecular analysis of nervous system function: it has a simple and well characterized nervous system, and its short generation time, small and largely sequenced genome, and accessibility to germline transformation make it ideal for classical and molecular genetic studies. C. elegans exhibits a striking and easily measurable response to nicotine, and long- term nicotine exposure leads to nicotine tolerance and dependence with respect to behaviors controlled by both neuromuscular and neuronal nicotinic receptors. In this project, genes required for nicotine adaptation in nematodes will be identified by screening for adaptation-defective mutants. Two nicotine adaptation genes identified in earlier screens will be cloned to determine their molecular functions, and to characterize the cellular pathways in which they function. The possibility, suggested by studies of protein kinase C-defective mutants, that PKC phosphorylation of nicotinic receptor subunits is a mechanism for nicotine adaptation will be tested through the analysis of transgenic worms expressing mutant receptors. The ultimate goal of this work is to provide a model for the general molecular mechanisms underlying nicotine adaptation in neurons, and to identify new proteins that participate in nicotine addiction in other animals, including vertebrates.
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IDENTIFICATION OF PROTEINS ASSOCIATED WITH NICOTINIC ACETYLCHOLINE RECEPTORS
  • 批准号:
    7420654
  • 项目类别:
  • 资助金额:
    $0.29万
  • 财政年份:
    2006
  • 负责人:
    WILLIAM R SCHAFER
  • 依托单位:
Machine Vision Analysis of C. Elegans Phenotypic Patterns
Machine Vision Analysis of C. Elegans Phenotypic Patterns
Machine vision analysis of C.elegans phenotypic patterns
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