Noha M. El-Shishtawy, Fatma M. El Marzouky, Hanan A. El-Hagrasy
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引用次数: 0
摘要
衰老过程中会发生细胞和分子变化,降低器官功能。衰老过程是通过几种生物标志物来测量的,其中包括 DNA 甲基化(DNAm),这是一种调节基因表达的表观遗传变化,在预测生物年龄方面具有很高的准确性。DNAm 具有遗传性,因此在不同人群之间存在差异。目的是评估作为表观遗传时钟的埃及男性和女性人群的血液 DNA 甲基化变化。通过一项横断面研究,对 100 名健康埃及人(18-69 岁)的血液样本中 9 个 CpG 位点的甲基化情况进行了热释光测序测量。在三个年龄组中比较了两种基于 ELOVL2 基因的年龄预测模型,尽管准确性随着年龄的增加而降低,但它们在所有年龄组中都具有相关性。使用第一和第二年龄预测模型得出的平均绝对偏差(MAD),18-40 岁分别为 1.06 和 2.7;41-60 岁分别为 4.4 和 3.8;大于 60 岁分别为 7.7 和 7.0。男女之间的 DNA 甲基化没有明显差异。ELOVL2 基因的 DNA 甲基化可作为准确估算年龄的生物标志物。此外,这种方法有可能比传统的年龄估计方法更准确。
DNA methylation of ELOVL2 gene as an epigenetic marker of age among Egyptian population
Cellular and molecular changes occur during aging, decreasing organ function. The aging process was measured by several biomarkers, including DNA methylation (DNAm), an epigenetic change regulating gene expression, which is highly accurate at predicting biological age. DNAm is heritable and therefore varies between different populations. To assess blood DNA methylation changes as epigenetic clocks in the male and female Egyptian population. Pyrosequencing was used to measure the methylation of nine CpG sites in blood samples from 100 healthy Egyptians (18–69 years) using a cross-sectional study. Two age predicted models based on the ELOVL2 gene were compared in three age categories and correlated in all age groups despite decreasing accuracy with increasing age. The mean absolute deviation (MAD) using the 1st and 2nd age predicted models for 18–40 years was 1.06 and 2.7, respectively; for 41–60 years, it was 4.4 and 3.8, respectively; and for > 60 years, it was 7.7 and 7.0, respectively. No significant differences in DNA methylation were found between the sexes. DNA methylation of the ELOVL2 gene can be used as an accurate biomarker for age estimation. Additionally, this method has the potential to be more accurate than traditional methods of age estimation.