Neuroscience Institute, Lithuanian University of Health Sciences, Medical Academy, Kaunas, Lithuania.
Ophthalmology Laboratory, Neuroscience Institute, Lithuanian University of Health Sciences, Medical Academy, Eivenių 2, Kaunas, Lithuania.
Biogerontology. 2020 Feb;21(1):57-67. doi: 10.1007/s10522-019-09843-0. Epub 2019 Oct 23.
Telomeres are nucleoprotein structures that cap the end of each chromosome and function to maintain genome stability. The length of telomeres is known to shorten with each cell division and it is well-established that telomere attrition is related to replicative capacity in vitro. Moreover, telomere loss is also correlated with the process of aging in vivo. That is why we aimed to find any associations of leukocyte telomere shortening with different age groups. We enrolled 291 healthy people in a study group. Samples of DNA from peripheral blood leukocytes were purified by the DNA salting-out method. The genotyping was carried out using the real-time polymerase chain reaction. The results were assessed using the statistical analysis software ''IBM SPSS Statistics 23.0". To determine the relationship between the leukocyte telomere length and single nucleotide polymorphisms of TERT and TRF1 and the age of healthy individuals. The relative leukocyte telomere length (T/S) measurement was performed in study subjects and compared between different age groups. We found that T/S in the first age group was statistically significantly higher than in the second group (p = 0.040), while in the second and the third age groups T/S was statistically significantly lower than in the fourth age group (p < 0.001 and p = 0.001 respectively). There was also a weak negative but statistically significant inverse correlation between the age of the subjects and the length of telomeres (p = 0.025). We found that TRF1 rs10107605 CC genotype was statistically significantly more frequent in subjects with long telomeres than in subjects with short telomeres (p = 0.009). The TRF1 rs10107605 CC genotype compared to AA genotype was associated with 75% decreased odds of telomere shortening (p = 0.017), and the CC genotype compared to AA + AC genotypes was associated with 75% decreased odds (p = 0.014). T/S correlates with age negatively. The frequencies of genotypes and alleles of TERT rs2736098, rs401681 and TRF1 rs1545827 did not differ between different age groups. The TRF1 rs10107605 polymorphism is associated with telomere shortening.
端粒是一种核蛋白结构,位于每条染色体的末端,其功能是维持基因组的稳定性。已知端粒的长度会随着细胞分裂而缩短,而且端粒的损耗与体外的复制能力密切相关。此外,端粒的损失也与体内的衰老过程有关。这就是为什么我们旨在寻找白细胞端粒缩短与不同年龄组之间的任何关联。
我们招募了 291 名健康人作为研究对象。通过 DNA 盐析法从外周血白细胞中纯化 DNA。使用实时聚合酶链反应进行基因分型。使用统计分析软件“IBM SPSS Statistics 23.0”进行结果评估。为了确定白细胞端粒长度与 TERT 和 TRF1 的单核苷酸多态性和健康个体年龄之间的关系。在研究对象中进行相对白细胞端粒长度(T/S)测量,并在不同年龄组之间进行比较。
我们发现,第一年龄组的 T/S 明显高于第二年龄组(p=0.040),而第二年龄组和第三年龄组的 T/S 明显低于第四年龄组(p<0.001 和 p=0.001)。受试者年龄与端粒长度之间也存在弱的负相关,但具有统计学意义(p=0.025)。我们发现,TRF1 rs10107605 CC 基因型在端粒较长的受试者中比在端粒较短的受试者中更为常见(p=0.009)。与 AA 基因型相比,TRF1 rs10107605 CC 基因型与端粒缩短的几率降低 75%(p=0.017),与 AA+AC 基因型相比,CC 基因型与端粒缩短的几率降低 75%(p=0.014)。T/S 与年龄呈负相关。TERT rs2736098、rs401681 和 TRF1 rs1545827 的基因型和等位基因频率在不同年龄组之间没有差异。TRF1 rs10107605 多态性与端粒缩短有关。