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Coincident linkage of type 2 diabetes, metabolic syndrome, and measures of cardiovascular disease in a genome scan of the diabetes heart study.

机译:在糖尿病心脏研究的基因组扫描中,2型糖尿病,代谢综合征和心血管疾病的符合性关联。

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Cardiovascular disease (CVD) is a major contributor to morbidity and mortality in type 2 diabetes, but the relationship between CVD and type 2 diabetes is not well understood. The Diabetes Heart Study is a study of type 2 diabetes-enriched families extensively phenotyped for measures of CVD, type 2 diabetes, and metabolic syndrome. A total of 977 Caucasian subjects from 358 pedigrees (575 type 2 diabetic relative pairs) with at least two individuals with type 2 diabetes and, where possible, unaffected siblings were included in a genome scan. Qualitative traits evaluated in this analysis are with or without the presence of coronary calcified plaque (CCP) and with or without carotid calcified plaque (CarCP) measured by electrocardiogram-gated helical computed tomography. In addition, prevalent CVD was measured using two definitions: CVD1, based on self-reported history of clinical CVD (393 subjects), and CVD2, defined as CVD1 and/or CCP >400 (606 subjects). These discrete traits (type 2 diabetes, metabolic syndrome, CVD1, CVD2, CCP, and CarCP) frequently coincide in the same individuals with concordance ranging from 42.9 to 99%. Multipoint nonparametric linkage analysis revealed evidence for coincident mapping of each trait (type 2 diabetes, metabolic syndrome, CVD1, CVD2, CCP, and CarCP) to three different genomic regions: a broad region on chromosome 3 (70-160 cM; logarithm of odds [LOD] scores ranging between 1.15 and 2.71), chromosome 4q31 (peak LOD 146 cM; LOD scores ranging between 0.90 and 2.41), and on chromosome 14p (peak LOD 23 cM; LOD scores ranging between 1.43 and 2.31). Ordered subset analysis (OSA) suggests that the linked chromosome 3 region consists of at least two separate loci on 3p and 3q. In addition, OSA based on lipid measures and other traits identify family subsets with significantly stronger evidence of linkage (e.g., CVD2 on chromosome 3 at 87 cM subsetting on low HDL with an initial LOD of 2.19 is maximized to an LOD of 7.04 in a subset of 25% of the families and CVD2 on chromosome 14 at 22 cM subsetting on high triglycerides with an initial LOD of 1.99 maximized to an LOD of 4.90 in 44% of the families). When subjects are defined as affected by the presence of each trait (type 2 diabetes, metabolic syndrome, CVD1, and CCP), significant evidence for linkage to the 3p locus is observed with a peak LOD of 4.13 at 87 cM. While the correlated nature of the traits makes it unclear whether these loci represent distinct type 2 diabetes, metabolic syndrome, or CVD loci or single loci with pleiotropic effects, the coincident linkage suggests that identification of the underlying genes may help clarify the relationship of diabetes, metabolic syndrome, and CVD.
机译:心血管疾病(CVD)是导致2型糖尿病发病率和死亡率的主要因素,但人们对CVD与2型糖尿病之间的关系了解甚少。 《糖尿病心脏研究》是对2型糖尿病高发家庭进行广泛表型研究的一项研究,用于测量CVD,2型糖尿病和代谢综合征。基因组扫描包括来自358个家谱(575个2型糖尿病相对对)的977名白种人受试者,其中至少有2名2型糖尿病个体,并且在可能的情况下未患病的兄弟姐妹也包括在内。在此分析中评估的定性特征是有无冠状动脉钙化斑块(CCP)和有无冠状动脉钙化斑块(CarCP)(通过心电图门控螺旋CT)。此外,使用两种定义来测量流行的CVD:基于临床CVD自我报告的历史记录的CVD1(393名受试者)和定义为CVD1和/或CCP> 400的CVD2(606名受试者)。这些离散的特征(2型糖尿病,代谢综合征,CVD1,CVD2,CCP和CarCP)经常在同一个体中同时出现,一致性从42.9%到99%不等。多点非参数连锁分析揭示了每个特征(2型糖尿病,代谢综合征,CVD1,CVD2,CCP和CarCP)到三个不同基因组区域的对应映射的证据:3号染色体上的宽广区域(70-160 cM;对数对数) [LOD]分数介于1.15和2.71之间,染色体4q31(峰值LOD 146 cM; LOD分数介于0.90和2.41之间),以及14p染色体(峰值LOD 23 cM; LOD分数介于1.43和2.31之间)。有序子集分析(OSA)表明,连接的3号染色体区域由3p和3q上的至少两个单独的基因座组成。此外,基于脂质测量和其他特征的OSA可以确定具有明显较强连锁证据的家庭亚群(例如,低HDL时亚群87 cM处的3号染色体上的CVD2,初始LOD为2.19,最大亚群中的LOD为7.04。 (25%的家族)和22 cM的14号染色体上的CVD2在高甘油三酸酯上亚组化,初始LOD为1.99,在44%的家族中最大为4.90。当将受试者定义为受每种特征(2型糖尿病,代谢综合征,CVD1和CCP)的影响时,观察到与3p基因座连锁的明显证据,其峰值LOD为87 cM时为4.13。这些特征的相关性质尚不清楚这些基因座是否代表明显的2型糖尿病,代谢综合征或CVD基因座或具有多效作用的单个基因座,但同时存在的关联性表明,潜在基因的鉴定可能有助于阐明糖尿病的相关性,代谢综合征和CVD。

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