首页> 外文OA文献 >Genome wide association and linkage analyses identified three loci-4q25, 17q23.2, and 10q11.21-associated with variation in leukocyte telomere length: the Long Life Family Study
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Genome wide association and linkage analyses identified three loci-4q25, 17q23.2, and 10q11.21-associated with variation in leukocyte telomere length: the Long Life Family Study

机译:全基因组关联和连锁分析确定了三个基因座4q25、17q23.2和10q11.21与白细胞端粒长度的变化相关:长寿命家庭研究

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摘要

Leukocyte telomere length is believed to measure cellular aging in humans, and short leukocyte telomere length is associated with increased risks of late onset diseases, including cardiovascular disease, dementia, etc. Many studies have shown that leukocyte telomere length is a heritable trait, and several candidate genes have been identified, including TERT, TERC, OBFC1, and CTC1. Unlike most studies that have focused on genetic causes of chronic diseases such as heart disease and diabetes in relation to leukocyte telomere length, the present study examined the genome to identify variants that may contribute to variation in leukocyte telomere length among families with exceptional longevity. From the genome wide association analysis in 4,289 LLFS participants, we identified a novel intergenic SNP rs7680468 located near PAPSS1 and DKK2 on 4q25 (p = 4.7E-8). From our linkage analysis, we identified two additional novel loci with HLOD scores exceeding three, including 4.77 for 17q23.2, and 4.36 for 10q11.21. These two loci harbor a number of novel candidate genes with SNPs, and our gene-wise association analysis identified multiple genes, including DCAF7, POLG2, CEP95, and SMURF2 at 17q23.2; and RASGEF1A, HNRNPF, ANF487, CSTF2T, and PRKG1 at 10q11.21. Among these genes, multiple SNPs were associated with leukocyte telomere length, but the strongest association was observed with one contiguous haplotype in CEP95 and SMURF2. We also show that three previously reported genes-TERC, MYNN, and OBFC1-were significantly associated with leukocyte telomere length at p empirical 0.05.
机译:据信白细胞端粒长度可以衡量人类细胞的衰老,而白细胞端粒长度短会增加晚发疾病(包括心血管疾病,痴呆等)的风险。许多研究表明,白细胞端粒长度是一种可遗传的性状,还有一些已经鉴定出候选基因,包括TERT,TERC,OBFC1和CTC1。与大多数关注与白细胞端粒长度有关的慢性疾病(如心脏病和糖尿病)的遗传原因的研究不同,本研究检查了基因组,以鉴定可能导致寿命异常长的家庭中白细胞端粒长度变异的变异体。从对4,289名LLFS参与者的全基因组关联分析中,我们确定了4q25上位于PAPSS1和DKK2附近的新型基因间SNP rs7680468(p = 4.7E-8)。从我们的连锁分析中,我们发现了HLOD得分超过3的另外两个新基因座,包括17q23.2的4.77和10q11.21的4.36。这两个基因座包含许多带有SNP的新候选基因,我们的基因关联分析确定了17q23.2处的多个基因,包括DCAF7,POLG2,CEP95和SMURF2。在10q11.21处输入RASGEF1A,HNRNPF,ANF487,CSTF2T和PRKG1。在这些基因中,多个SNP与白细胞端粒的长度相关,但在CEP95和SMURF2中,与一种连续的单倍型相关性最强。我们还显示,三个先前报道的基因-TERC,MYNN和OBFC1与白细胞端粒长度显着相关,p经验值<0.05。

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