DNA methylation in the pathogenesis of type 2 diabetes in humans

التفاصيل البيبلوغرافية
العنوان: DNA methylation in the pathogenesis of type 2 diabetes in humans
المؤلفون: Sonia García-Calzón, Karl Bacos, Cajsa Davegårdh, Charlotte Ling
المصدر: Molecular Metabolism
Molecular Metabolism, Vol 14, Iss, Pp 12-25 (2018)
مصطلحات موضوعية: 0301 basic medicine, HFD, high-fat diet, endocrine system diseases, BMI, body mass index, FH, family history, OXPHOS, oxidative phosphorylation, NBW, normal birth weight, Genome-wide association study, HDAC, histone deacetylase, Disease, Type 2 diabetes, Bioinformatics, WGBS, whole-genome bisulfite sequencing, CIT, causal inference test, 0302 clinical medicine, Special Section on Epigenetics (2018), PUFA, polyunsaturated fatty acids, DNA methylation, ncRNA, non-coding RNA, DMR, differentially methylated region, SNP, single nucleotide polymorphism, MZ, monozygotic, 3. Good health, Adipose Tissue, Liver, eQTL, expression quantitative trait loci, Medical genetics, Epigenetics, nt, nucleotide, lcsh:Internal medicine, medicine.medical_specialty, NAFLD, non-alcoholic fatty liver disease, HOMA-IR, homeostatic model assessment for insulin resistance, NASH, non-alcoholic steatohepatitis, HDL, high-density lipoprotein, 030209 endocrinology & metabolism, T2D, type 2 diabetes, Biology, EWAS, epigenome-wide association study, LBW, low birth weight, 03 medical and health sciences, Islets of Langerhans, Insulin resistance, medicine, OGTT, oral glucose-tolerance test, Humans, lcsh:RC31-1245, Muscle, Skeletal, GWAS, genome-wide association study, Molecular Biology, nutritional and metabolic diseases, Cell Biology, Epigenome, medicine.disease, mQTL, methylation quantitative trait loci, 030104 developmental biology, Diabetes Mellitus, Type 2, DNMT, DNA methyltransferase, SFA, saturated fatty acids, TSS, transcription start site, MeDIP, methylated DNA immunoprecipitation, HbA1c, glycated hemoglobin A1c
الوصف: Background: Type 2 diabetes (T2D) is a multifactorial, polygenic disease caused by impaired insulin secretion and insulin resistance. Genome-wide association studies (GWAS) were expected to resolve a large part of the genetic component of diabetes; yet, the single nucleotide polymorphisms identified by GWAS explain less than 20% of the estimated heritability for T2D. There was subsequently a need to look elsewhere to find disease-causing factors. Mechanisms mediating the interaction between environmental factors and the genome, such as epigenetics, may be of particular importance in the pathogenesis of T2D. Scope of Review: This review summarizes knowledge of the impact of epigenetics on the pathogenesis of T2D in humans. In particular, the review will focus on alterations in DNA methylation in four human tissues of importance for the disease; pancreatic islets, skeletal muscle, adipose tissue, and the liver. Case–control studies and studies examining the impact of non-genetic and genetic risk factors on DNA methylation in humans will be considered. These studies identified epigenetic changes in tissues from subjects with T2D versus non-diabetic controls. They also demonstrate that non-genetic factors associated with T2D such as age, obesity, energy rich diets, physical activity and the intrauterine environment impact the epigenome in humans. Additionally, interactions between genetics and epigenetics seem to influence the pathogenesis of T2D. Conclusions: Overall, previous studies by our group and others support a key role for epigenetics in the growing incidence of T2D. Keywords: Epigenetics, DNA methylation, Type 2 diabetes
اللغة: English
تدمد: 2212-8778
DOI: 10.1016/j.molmet.2018.01.022
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::acb9a91dde2ed703af4dea93e95946b7Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....acb9a91dde2ed703af4dea93e95946b7
قاعدة البيانات: OpenAIRE
الوصف
تدمد:22128778
DOI:10.1016/j.molmet.2018.01.022