Université de Lorraine, Inserm, DCAC, F-54000 Nancy, France.
Université de Lorraine, CHRU-Nancy, Pôle "Maladies du Vieillissement, Gérontologie et Soins Palliatifs", F-54000 Nancy, France.
Cells. 2020 May 31;9(6):1360. doi: 10.3390/cells9061360.
Short leukocyte telomere length (LTL) is associated with atherosclerotic cardiovascular disease (ASCVD). Mendelian randomisation studies, using single nucleotide polymorphisms (SNPs) associated with short LTL, infer a causal role of LTL in ASCVD. Recent results, using the blood-and-muscle model, indicate that higher early life LTL attrition, as estimated by the ratio between LTL and skeletal muscle telomere length (MTL), rather than short LTL at conception, as estimated by MTL, should be responsible of the ASCVD-LTL connection. We combined LTL and MTL measurements and SNPs profiling in 402 individuals to determine if 15 SNPs classically described as associated with short LTL at adult age were rather responsible for higher LTL attrition during early life than for shorter LTL at birth. Two of these SNPs (rs12696304 and rs10936599) were associated with LTL in our cohort ( = 0.027 and = 0.025, respectively). These SNPs, both located on the gene, were associated with the LTL/MTL ratio ( = 0.007 and = 0.037, respectively), but not with MTL ( = 0.78 and = 0.32 respectively). These results suggest that SNPs located on genes coding for telomere maintenance proteins may contribute to a higher LTL attrition during the highly replicative first years of life and have an impact later on the development of ASCVD.
短的白细胞端粒长度(LTL)与动脉粥样硬化性心血管疾病(ASCVD)有关。使用与短 LTL 相关的单核苷酸多态性(SNP)的孟德尔随机化研究推断出 LTL 在 ASCVD 中的因果作用。最近的使用血液和肌肉模型的结果表明,较高的早期 LTL 损耗,如 LTL 与骨骼肌端粒长度(MTL)之间的比值所估计的那样,而不是如 MTL 所估计的在受孕时的短 LTL,应该是 ASCVD-LTL 联系的原因。我们结合了 402 个人的 LTL 和 MTL 测量和 SNP 分析,以确定 15 个经典地描述为与成人时期短 LTL 相关的 SNP 是否是导致早期 LTL 损耗较高的原因,而不是导致出生时 LTL 较短的原因。其中两个 SNP(rs12696304 和 rs10936599)与我们队列中的 LTL 相关(=0.027 和=0.025)。这些 SNP 都位于基因上,与 LTL/MTL 比值相关(=0.007 和=0.037),但与 MTL 无关(=0.78 和=0.32)。这些结果表明,位于编码端粒维持蛋白的基因上的 SNP 可能导致在生命的高度复制的最初几年中 LTL 损耗更高,并在以后对 ASCVD 的发展产生影响。