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DBH as a Modifying Gene in Neurodegenerative Diseases

DBH as a Modifying Gene in Neurodegenerative Diseases
DBH 作为神经退行性疾病的修饰基因
批准号:
6508509
负责人:
CYRUS P ZABETIAN
金额:
$16.63万
依托单位:
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:
已结题
起止时间:
2002-08-19 至 2007-07-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):申请人赛勒斯·扎贝提安博士,过去三年一直在耶鲁大学/VACHS做博士后研究员。他将于明年加入华盛顿大学的神经学教员,在那里,他未来的导师托马斯·伯德博士和杰拉德·谢伦伯格博士在神经遗传学方面建立了一流的研究项目。他的培训将包括参加实验室会议、研讨会、结构化课程和年度科学会议。他将成为拥有临床和分子神经遗传学、儿茶酚胺生物化学和生物统计学专业知识的研究人员丰富合作网络的一部分。扎贝蒂安博士的长期计划是在五年内成为一名独立的实验室调查员,并继续积极参与神经病学服务的患者护理和住院医生培训。 在神经退行性疾病研究中,识别存活神经元代偿性变化的遗传机制有望带来更好的诊断和治疗策略。本申请中提出的项目旨在确定新发现的启动子多态性(C-1021T)是否影响DBH基因的调节,并可能对帕金森病(PD)的临床后果产生影响,该项目分为三个部分。第一部分的目的是评估与血浆DBH酶水平低相关的C-1021T等位基因纯合性是否预示着PD患者更早发病和更严重的交感衰竭症状。将从400名临床帕金森病患者中选择一组C或T等位基因纯合的40名受试者,并使用交感神经功能指数进行纵向评估。第二部分试图确定C-1021T是否与去甲肾上腺素能组织中DBH的表达密切相关。我们将使用Western blotts和实时定量RT-PCR分别比较C或T等位基因纯合的死后人肾上腺髓质标本中DBH蛋白和mRNA的水平。第三部分将评估C-1021T是否直接起作用。如果初步结果是有利的,将建立两个纯合子T或C等位基因的转基因小鼠系,其中内源性小鼠DBH启动子的近2kb被同源人类序列取代。比较两个品系的胸径蛋白和儿茶酚胺的血浆和组织水平,可以检测到每个等位基因对胸径表达的影响。
英文摘要
DESCRIPTION (provided by applicant): The applicant, Dr. Cyrus Zabetian, has spent the past three years as a postdoctoral fellow at Yale University/ VACHS. He will join the neurology faculty at the University of Washington next year where his future mentors, Drs. Thomas Bird and Gerard Schellenberg, have established a superb research program in neurogenetics. His training will include participation in laboratory meetings, seminars, structured courses, and annual scientific meetings. He will become part of a rich collaborative network of researchers with expertise in clinical and molecular neurogenetics, catecholamine biochemistry, and biostatistics. Dr. Zabetian's long-term plans are to become established as an independent laboratory investigator within five years, and remain actively involved in patient care and resident training on the neurology service. In neurodegenerative disease research, identifying genetic mechanisms underlying compensatory changes in surviving neurons promises to lead to improved strategies of diagnosis and treatment. The project proposed in this application seeks to determine if a newly discovered promoter polymorphism (C-1021T) influences regulation of the DBH gene with potential clinical consequences in Parkinson's disease (PD), and is divided into three parts. The goal of part I is to evaluate whether homozygosity for the T allele of C-1021 T, which is associated with low levels of plasma DBH enzyme, is predictive of an earlier onset and more severe symptoms of sympathetic failure in patients with PD. A group of forty subjects homozygous for either the C or T allele will be selected from a population of 400 clinic patients with PD and assessed longitudinally using indices of sympathetic function. Part II seeks to determine whether C-1021T strongly associates with DBH expression in noradrenergic tissues. Levels of DBH protein and mRNA will be compared in postmortem human adrenal medulla specimens, homozygous for either the C or T allele, using western blots and quantitative real time RT-PCR, respectively. Part III will assess whether C-1021T is directly functional. If preliminary results are favorable, two transgenic mouse lines homozygous for either the T or C allele will be created in which the proximal 2 kb of the endogenous mouse DBH promoter is replaced by homologous human sequence. Comparing plasma and tissue levels of DBH protein and catecholamines in the two lines will detect the effect of each allele on DBH expression.
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Genetic Architecture of Parkinson's Disease in African-American and Latino Veterans
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