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Analysis of Coding Variants Associated with Age-Related Phenotypes

Analysis of Coding Variants Associated with Age-Related Phenotypes
与年龄相关表型相关的编码变异分析
批准号:
8823714
负责人:
Laura M Raffield
金额:
$0.08万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-06-01 至 2015-06-12

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):衰老过程中的许多合并症,包括心血管疾病、认知能力下降和代谢失调,被认为受到遗传因素的显著影响。2型糖尿病(T2 D)是一种影响美国超过25%的65岁以上成年人的疾病,也被认为具有重要的遗传成分,并且T2 D个体具有与年龄相关的合并症的高风险。常见和不常见的编码遗传变异可能在这些与年龄相关的合并症中发挥重要作用,本项目旨在阐明与衰老和死亡率特征的广泛生物医学措施显着相关的编码变异。Illumina(R)HumanExome BeadChips包含超过240,000种编码变体,将允许对糖尿病心脏研究队列中的相关编码变体进行快速和全面的分析,这是一个广泛的基于家族的表型队列,富集了T2 D患者。我们最初的重点将是C1 q和肿瘤坏死因子(TNF)基因超家族。在这个家族的成员,脂联素,这导致该蛋白质的血浆水平显着降低的不常见的编码变异最近被发现,我们假设,在其他C1 q/TNF超家族成员,在代谢,炎症和其他过程中有不同的作用,编码变异可能有助于年龄相关的表型。与炎症相关的基因,如细胞因子及其受体,也将特别感兴趣,因为炎症过程是许多年龄相关疾病(包括T2 D)发病机制的关键。来自糖尿病心脏研究的外显子组芯片数据的有趣发现将在与衰老相关的其他队列中复制。拟议的研究将进一步发展我作为一个独立的研究者,并给我宝贵的经验,在人类遗传学工具的衰老研究的有意义的应用。
英文摘要
DESCRIPTION (provided by applicant): Many comorbidities of the aging process, including cardiovascular disease, cognitive decline, and metabolic dysregulation, are thought to be significantly influenced by genetic factors. Type 2 diabetes (T2D), a disease which affects more than 25% of adults over age 65 in the United States, is also thought to have a significant genetic component, and individuals with T2D are at high risk for age-related comorbidities. Common and uncommon coding genetic variants may play a significant role in these age-related comorbidities, and this project aims to elucidate coding variants which are significantly associated with a wide range of biomedical measures characteristic of aging and with mortality. Illumina(R) HumanExome BeadChips, which include over 240,000 coding variants, will allow rapid and comprehensive analysis of relevant coding variants in the Diabetes Heart Study cohort, an extensively phenotyped family-based cohort enriched for patients with T2D. Our initial focus will be on the C1q and tumor necrosis factor (TNF) superfamily of genes. Uncommon coding variants in a member of this family, adiponectin, which lead to a dramatic reduction in plasma levels of this protein have recently been discovered, and we hypothesize that coding variants in other C1q/TNF superfamily members, which have diverse roles in metabolism, inflammation, and other processes, may contribute to age-related phenotypes. Genes related to inflammation, such as cytokines and their receptors, will also be of particular interest, as inflammatory processes are key to the pathogenesis of many age-related diseases, including T2D. Interesting findings from the Exome Chip data from the Diabetes Heart Study will be replicated in other cohorts relevant to aging. The proposed research will further my development as an independent investigator and give me valuable experience in the meaningful application of human genetics tools to aging research.
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