Suppr超能文献

整合表观基因组、全基因组序列和代谢组分析鉴定 2 型糖尿病的新型多组学途径:一项中东研究。

Integrated epigenome, whole genome sequence and metabolome analyses identify novel multi-omics pathways in type 2 diabetes: a Middle Eastern study.

机构信息

Genetic Medicine, Weill Cornell Medicine-Qatar, Doha, Qatar.

College of Health and Life Sciences, Hamad Bin Khalifa University, Doha, Qatar.

出版信息

BMC Med. 2023 Sep 8;21(1):347. doi: 10.1186/s12916-023-03027-x.

Abstract

BACKGROUND

T2D is of high prevalence in the middle east and thus studying its mechanisms is of a significant importance. Using 1026 Qatar BioBank samples, epigenetics, whole genome sequencing and metabolomics were combined to further elucidate the biological mechanisms of T2D in a population with a high prevalence of T2D.

METHODS

An epigenome-wide association study (EWAS) with T2D was performed using the Infinium 850K EPIC array, followed by whole genome-wide sequencing SNP-CpG association analysis (> 5.5 million SNPs) and a methylome-metabolome (CpG-metabolite) analysis of the identified T2D sites.

RESULTS

A total of 66 T2D-CpG associations were identified, including 63 novel sites in pathways of fructose and mannose metabolism, insulin signaling, galactose, starch and sucrose metabolism, and carbohydrate absorption and digestion. Whole genome SNP associations with the 66 CpGs resulted in 688 significant CpG-SNP associations comprising 22 unique CpGs (33% of the 66 CPGs) and included 181 novel pairs or pairs in novel loci. Fourteen of the loci overlapped published GWAS loci for diabetes related traits and were used to identify causal associations of HK1 and PFKFB2 with HbA1c. Methylome-metabolome analysis identified 66 significant CpG-metabolite pairs among which 61 pairs were novel. Using the identified methylome-metabolome associations, methylation QTLs, and metabolic networks, a multi-omics network was constructed which suggested a number of metabolic mechanisms underlying T2D methylated genes. 1-palmitoyl-2-oleoyl-GPE (16:0/18:1) - a triglyceride-associated metabolite, shared a common network with 13 methylated CpGs, including TXNIP, PFKFB2, OCIAD1, and BLCAP. Mannonate - a food component/plant shared a common network with 6 methylated genes, including TXNIP, BLCAP, THBS4 and PEF1, pointing to a common possible cause of methylation in those genes. A subnetwork with alanine, glutamine, urea cycle (citrulline, arginine), and 1-carboxyethylvaline linked to PFKFB2 and TXNIP revealed associations with kidney function, hypertension and triglyceride metabolism. The pathway containing STYXL1-POR was associated with a sphingosine-ceramides subnetwork associated with HDL-C and LDL-C and point to steroid perturbations in T2D.

CONCLUSIONS

This study revealed several novel methylated genes in T2D, with their genomic variants and associated metabolic pathways with several implications for future clinical use of multi-omics associations in disease and for studying therapeutic targets.

摘要

背景

2 型糖尿病(T2D)在中东地区的患病率很高,因此研究其发病机制具有重要意义。本研究利用卡塔尔生物库的 1026 个样本,结合表观遗传学、全基因组测序和代谢组学,进一步阐明了在 T2D 高发人群中 T2D 的生物学机制。

方法

采用 Infinium 850K EPIC 芯片进行 T2D 的全基因组关联研究(EWAS),随后进行全基因组范围内 SNP-CpG 关联分析(>550 万个 SNPs)和鉴定出的 T2D 位点的甲基化组-代谢组(CpG-代谢物)分析。

结果

共鉴定出 66 个与 T2D 相关的 CpG 位点,包括果糖和甘露糖代谢、胰岛素信号、半乳糖、淀粉和蔗糖代谢以及碳水化合物吸收和消化途径中的 63 个新位点。与 66 个 CpG 相关的全基因组 SNP 关联导致 688 个显著的 CpG-SNP 关联,包括 22 个独特的 CpG(66 个 CpG 的 33%),并包括 181 个新的对或新的基因座对。14 个基因座与已发表的与糖尿病相关特征的 GWAS 基因座重叠,并用于鉴定 HK1 和 PFKFB2 与 HbA1c 的因果关联。甲基化组-代谢组分析鉴定出 66 个显著的 CpG-代谢物对,其中 61 对是新的。利用鉴定出的甲基化组-代谢组关联、甲基化 QTL 和代谢网络,构建了一个多组学网络,该网络提示了 T2D 甲基化基因的一些代谢机制。1-棕榈酰基-2-油酰基-GPE(16:0/18:1)-一种甘油三酯相关代谢物,与包括 TXNIP、PFKFB2、OCIAD1 和 BLCAP 在内的 13 个甲基化 CpG 共享一个共同的网络。甘露酸盐——一种食物成分/植物,与包括 TXNIP、BLCAP、THBS4 和 PEF1 在内的 6 个甲基化基因共享一个共同的网络,提示这些基因的甲基化可能有共同的原因。与 PFKFB2 和 TXNIP 相关的丙氨酸、谷氨酰胺、尿素循环(瓜氨酸、精氨酸)和 1-羧乙基缬氨酸的子网络与肾功能、高血压和甘油三酯代谢相关。包含 STYXL1-POR 的途径与鞘氨醇-神经酰胺亚网络相关联,该亚网络与高密度脂蛋白胆固醇(HDL-C)和低密度脂蛋白胆固醇(LDL-C)相关,提示 T2D 中固醇的改变。

结论

本研究揭示了 T2D 中几个新的甲基化基因及其基因组变异,以及与代谢途径相关的多个潜在治疗靶点,这对未来多组学关联在疾病中的临床应用以及治疗靶点的研究具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee30/10485955/c180d0aa561b/12916_2023_3027_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验