Al Khaldi Rasha, Mojiminiyi Olusegun, AlMulla Fahd, Abdella Nabila
Department of Pathology, Faculty of Medicine, Kuwait University, Kuwait, Kuwait.
Deartment of Medicine, Faculty of Medicine, Kuwait University, Kuwait, Kuwait.
PLoS One. 2015 Dec 31;10(12):e0145721. doi: 10.1371/journal.pone.0145721. eCollection 2015.
Previous Studies have mapped putative loci that may probably regulate leukocyte telomere length (LTL). The strongest associations with LTL were reported for SNP rs12696304 and rs16847897 near the non-coding Ribose Nucleic Acid (RNA) molecule component (TERC) of telomerase enzyme on 3q26. It is unclear whether these identified loci coding functional components of telomerase, exert a similar effect on LTL in other populations or influence risk factors of Type 2 Diabetes Mellitus (T2DM). The present study was performed to: study the influence of TERC polymorphisms on LTL, human telomerase reverse transcriptase (hTERT), indices of obesity and explore the potential associations with T2DM. 225 T2DM patients and 245 age and sex matched controls were studied. Allelic Discrimination (AD) genotyping was utilized to determine TERC SNPs [rs12696304 and rs16847897]. hTERT, adiponectin, Insulin, Homeostasis Model Assessment (HOMA-IR), and LTL were measured. Body Mass Index (BMI) and waist circumference (WC) were recorded. [CC] genotype of rs16847897 was significantly associated with shorter LTL [OR = 1.6, p = 0.004], lower hTERT levels [OR = 0.4, p = 0.006], higher BMI [OR = 2.2, p = 0.006], larger WC [OR = 23.4, p = 0.007] and hypo-adiponectemia [OR = 0.6, p = 0.006]. [GG] genotype of rs12696304 was also significantly associated with shorter LTL [OR = 1.5, p = 0.004], lower hTERT [OR = 0.7, p = 0.006] but with larger WC[OR = 5.3, p = 0.004]. [CC] genotype of rs16847897 and [GG] genotype of rs12696304 together increased the risk of T2DM significantly [OR = 1.7, p = 0.004]. We provide insights connecting a structure that is critically involved in maintaining genomic stability with obesity and T2DM. Given the central role of telomere length in determining telomere function our findings may expand our understanding of the pathological mechanisms underlying age associated conditions such as T2DM.
以往的研究已经绘制出可能调控白细胞端粒长度(LTL)的假定基因座。据报道,3q26上端粒酶的非编码核糖核酸(RNA)分子成分(TERC)附近的单核苷酸多态性(SNP)rs12696304和rs16847897与LTL的关联最为强烈。目前尚不清楚这些已确定的编码端粒酶功能成分的基因座是否对其他人群的LTL产生类似影响,或者是否影响2型糖尿病(T2DM)的危险因素。本研究旨在:研究TERC基因多态性对LTL、人端粒酶逆转录酶(hTERT)、肥胖指标的影响,并探索其与T2DM的潜在关联。对225例T2DM患者和245例年龄及性别匹配的对照者进行了研究。采用等位基因鉴别(AD)基因分型法确定TERC基因的单核苷酸多态性(SNP)[rs12696304和rs16847897]。检测了hTERT、脂联素、胰岛素、稳态模型评估(HOMA-IR)和LTL。记录了体重指数(BMI)和腰围(WC)。rs16847897的[CC]基因型与较短的LTL显著相关[比值比(OR)=1.6,P=0.004]、较低的hTERT水平[OR=0.4,P=0.006]、较高的BMI[OR=2.2,P=0.006]、较大的WC[OR=23.4,P=0.007]和低脂联素血症[OR=0.6,P=0.006]。rs12696304的[GG]基因型也与较短的LTL显著相关[OR=1.5,P=0.004]、较低的hTERT[OR=0.7,P=0.006],但与较大的WC相关[OR=5.3,P=0.004]。rs16847897的[CC]基因型和rs12696304的[GG]基因型共同显著增加了T2DM的发病风险[OR=1.7,P=0.004]。我们提供了一些见解,将一个在维持基因组稳定性中起关键作用的结构与肥胖和T2DM联系起来。鉴于端粒长度在决定端粒功能中的核心作用,我们的发现可能会扩展我们对诸如T2DM等与年龄相关疾病潜在病理机制的理解。