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TCF7L2 rs290487 C allele aberrantly enhances hepatic gluconeogenesis through allele-specific changes in transcription and chromatin binding

机译:TCF7L2 RS290487 C等位基因通过转录和染色质结合的等位基因特异性变化等离同于等位基因特异性的肝葡糖生成

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摘要

In this study, we investigated the mechanisms underlying the altered hepatic glucose metabolism and enhanced diabetes risk in individuals with the rs290487 C allele. Analysis of 195 cirrhotic patients revealed a higher insulin resistance index and incidence of hepatogenous diabetes in patients with the rs290487 C/C genotype compared to those with the C/T or T/T genotype. The experiments using targeted mutant PLC-PRF-5 cell line showed that cells with the rs290487 C/C genotype (C/C cells) had higher glucose production, lower glucose uptake, and lower mRNA and protein levels than those with the C/T genotype (C/T cells). Integrated multi-omics analysis of ChIP-seq, ATAC-seq, RNA-seq, and metabolomics data showed genome-wide alterations in the DNA binding affinity of TCF7L2 in the C/C cells, including gain (e.g., and ) and loss (e.g., and ) of binding sites in several glucose metabolism-related genes. These allele-specific changes in transcriptional regulation lead to increased expression of gluconeogenesis-related genes ( , and ) and their downstream metabolites (oxaloacetate and β-D-fructose 2,6-bisphosphate). These findings demonstrate that the rs290487 C allele enhances gluconeogenesis through allele-specific changes in transcription and chromatin binding.
机译:在这项研究中,我们调查了肝葡萄糖代谢改变的机制,并通过RS290487 C等位基因增强了个体的糖尿病风险。 195例肝硬化患者分析揭示了与C / T或T / T基因型的RS290487 C / C基因型患者患者胰岛素抵抗指数和肝源性糖尿病发病率。使用靶标突变体PLC-PRC-PRF-5细胞的实验显示,具有RS290487 C / C基因型(C / C细胞)的细胞具有更高的葡萄糖生产,降低葡萄糖摄取,降低mRNA和蛋白质水平,而不是C / T的细胞基因型(C / T细胞)。 Chip-SEQ,ATAC-SEQ,RNA-SEQ和代谢组数据的集成多OMICS分析显示在C / C细胞中TCF7L2的DNA结合亲和力的基因组改变,包括增益(例如和)和损失(例如,和)几种葡萄糖代谢相关基因中的结合位点。这些等位基因特异性转录调节的变化导致葡糖生成相关基因(和)和其下游代谢物的表达增加(草酸乙酸盐和β-D-果糖2,6-双磷酸盐)。这些研究结果表明,RS290487 C等位基因通过转录和染色质结合的等位基因特异性变化增强了葡糖苷。

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