Uncovering novel regulatory variants in carbohydrate metabolism: a comprehensive multi-omics study of glycemic traits in the Indian population.

IF 2.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Genetics and Genomics Pub Date : 2024-09-04 DOI:10.1007/s00438-024-02176-9
Janaki M Nair, Khushdeep Bandesh, Anil K Giri, Gauri Prasad, Donaka Rajashekhar, Punam Jha, Analabha Basu, Nikhil Tandon, Dwaipayan Bharadwaj
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Abstract

Clinical biomarkers such as fasting glucose, HbA1c, and fasting insulin, which gauge glycemic status in the body, are highly influenced by diet. Indians are genetically predisposed to type 2 diabetes and their carbohydrate-centric diet further elevates the disease risk. Despite the combined influence of genetic and environmental risk factors, Indians have been inadequately explored in the studies of glycemic traits. Addressing this gap, we investigate the genetic architecture of glycemic traits at genome-wide level in 4927 Indians (without diabetes). Our analysis revealed numerous variants of sub-genome-wide significance, and their credibility was thoroughly assessed by integrating data from various levels. This identified key effector genes, ZNF470, DPP6, GXYLT2, PITPNM3, BEND7, and LORICRIN-PGLYRP3. While these genes were weakly linked with carbohydrate intake or glycemia earlier in other populations, our findings demonstrated a much stronger association in the Indian population. Associated genetic variants within these genes served as expression quantitative trait loci (eQTLs) in various gut tissues essential for digestion. Additionally, majority of these gut eQTLs functioned as methylation quantitative trait loci (meth-QTLs) observed in peripheral blood samples from 223 Indians, elucidating the underlying mechanism of their regulation of target gene expression. Specific co-localized eQTLs-meth-QTLs altered the binding affinity of transcription factors targeting crucial genes involved in glucose metabolism. Our study identifies previously unreported genetic variants that strongly influence the diet-glycemia relationship. These findings set the stage for future research into personalized lifestyle interventions integrating genetic insights with tailored dietary strategies to mitigate disease risk based on individual genetic profiles.

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发现碳水化合物代谢中的新型调节变异:印度人群血糖特征的多组学综合研究。
临床生物标志物,如空腹血糖、HbA1c 和空腹胰岛素,可衡量体内的血糖状况,但受饮食的影响很大。印度人在遗传上易患 2 型糖尿病,而他们以碳水化合物为中心的饮食习惯进一步增加了患病风险。尽管受到遗传和环境风险因素的共同影响,但印度人的血糖特征研究却一直不够深入。为了填补这一空白,我们在全基因组水平上对 4927 名印度人(无糖尿病)的血糖特征遗传结构进行了研究。我们的分析揭示了许多具有亚全基因组意义的变异,并通过整合来自不同层面的数据对其可信度进行了全面评估。这确定了关键效应基因 ZNF470、DPP6、GXYLT2、PITPNM3、BEND7 和 LORICRIN-PGLYRP3。在其他人群中,这些基因与碳水化合物摄入量或血糖的关系较弱,而我们的研究结果表明,在印度人群中,这些基因与碳水化合物摄入量或血糖的关系要强得多。这些基因中的相关遗传变异成为消化所必需的各种肠道组织中的表达定量性状位点(eQTLs)。此外,在 223 名印度人的外周血样本中观察到,这些肠道 eQTL 大多具有甲基化定量性状位点(meth-QTL)的功能,从而阐明了它们调控目标基因表达的内在机制。特异性共定位 eQTLs-Meth-QTLs 改变了转录因子与葡萄糖代谢关键基因的结合亲和力。我们的研究发现了以前未报道过的基因变异,它们对饮食与血糖之间的关系有很大影响。这些发现为未来研究个性化生活方式干预奠定了基础,研究将遗传学见解与量身定制的膳食策略相结合,根据个体遗传特征降低疾病风险。
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来源期刊
Molecular Genetics and Genomics
Molecular Genetics and Genomics 生物-生化与分子生物学
CiteScore
5.10
自引率
3.20%
发文量
134
审稿时长
1 months
期刊介绍: Molecular Genetics and Genomics (MGG) publishes peer-reviewed articles covering all areas of genetics and genomics. Any approach to the study of genes and genomes is considered, be it experimental, theoretical or synthetic. MGG publishes research on all organisms that is of broad interest to those working in the fields of genetics, genomics, biology, medicine and biotechnology. The journal investigates a broad range of topics, including these from recent issues: mechanisms for extending longevity in a variety of organisms; screening of yeast metal homeostasis genes involved in mitochondrial functions; molecular mapping of cultivar-specific avirulence genes in the rice blast fungus and more.
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