Nuotio Marja-Liisa, Pervjakova Natalia, Joensuu Anni, Karhunen Ville, Hiekkalinna Tero, Milani Lili, Kettunen Johannes, Järvelin Marjo-Riitta, Jousilahti Pekka, Metspalu Andres, Salomaa Veikko, Kristiansson Kati, Perola Markus
Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
Genomics and Biobank Unit, Department of Public Health Solutions, National Institute for Health and Welfare, Biomedicum 1, Haartmaninkatu 8, 00290, Helsinki, Finland.
Sci Rep. 2020 Nov 25;10(1):20567. doi: 10.1038/s41598-020-77506-z.
The role of metabolic syndrome (MetS) as a preceding metabolic state for type 2 diabetes and cardiovascular disease is widely recognised. To accumulate knowledge of the pathological mechanisms behind the condition at the methylation level, we conducted an epigenome-wide association study (EWAS) of MetS and its components, testing 1187 individuals of European ancestry for approximately 470 000 methylation sites throughout the genome. Methylation site cg19693031 in gene TXNIP -previously associated with type 2 diabetes, glucose and lipid metabolism, associated with fasting glucose level (P = 1.80 × 10). Cg06500161 in gene ABCG1 associated both with serum triglycerides (P = 5.36 × 10) and waist circumference (P = 5.21 × 10). The previously identified type 2 diabetes-associated locus cg08309687 in chromosome 21 associated with waist circumference for the first time (P = 2.24 × 10). Furthermore, a novel HDL association with cg17901584 in chromosome 1 was identified (P = 7.81 × 10). Our study supports previous genetic studies of MetS, finding that lipid metabolism plays a key role in pathology of the syndrome. We provide evidence regarding a close interplay with glucose metabolism. Finally, we suggest that in attempts to identify methylation loci linking separate MetS components, cg19693031 appears to represent a strong candidate.
代谢综合征(MetS)作为2型糖尿病和心血管疾病的前期代谢状态,其作用已得到广泛认可。为了在甲基化水平积累对该病症背后病理机制的认识,我们开展了一项代谢综合征及其组分的全表观基因组关联研究(EWAS),在全基因组中对1187名欧洲血统个体的约470000个甲基化位点进行了检测。基因TXNIP中的甲基化位点cg19693031——先前与2型糖尿病、葡萄糖和脂质代谢相关——与空腹血糖水平相关(P = 1.80×10)。基因ABCG1中的cg06500161既与血清甘油三酯相关(P = 5.36×10),又与腰围相关(P = 5.21×10)。先前在21号染色体上确定的与2型糖尿病相关的位点cg08309687首次与腰围相关(P = 2.24×10)。此外,还发现了1号染色体上的cg17901584与高密度脂蛋白有新的关联(P = 7.81×10)。我们的研究支持了先前关于代谢综合征的遗传学研究,发现脂质代谢在该综合征的病理过程中起关键作用。我们提供了有关与葡萄糖代谢密切相互作用的证据。最后,我们建议,在试图识别连接代谢综合征各独立组分的甲基化位点时,cg19693031似乎是一个强有力的候选位点。