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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Co-expression Network Revealed Roles of RNA m6A Methylation in Human β-Cell of Type 2 Diabetes Mellitus
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Co-expression Network Revealed Roles of RNA m6A Methylation in Human β-Cell of Type 2 Diabetes Mellitus

机译:共表达网络揭示了RNA M6A甲基化在2型糖尿病的人β细胞中的作用

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RNA m6A methylation plays an important role in the pathogenesis of type 2 diabetes mellitus (T2DM). RNA modifications and RNA-modifying regulators have recently emerged as critical factors involved in β-cell function and insulin resistance, including ‘writers', ‘erasers' and ‘readers'. However, their key roles in regulating gene expression in T2DM remain unclear. The construction of co-expression network could provide a cue to resolve this complex regulatory pathway. We collected the transcriptome datasets of β-cell in diabetic patients, calculated the partial correlation coefficient, excluded the influence from control variables of diabetes related genes, and identified the genes significantly co-expressed with m6A regulators. A total of 985 genes co-expressed with m6A regulators (Co-m6AR) were identified, which were enriched in metabolic process, MAPK and EGFR signaling pathways. Some of them have been confirmed to play a pivotal role in T2DM, including CCNL2, CSAD, COX5A, GAB2, MIRLET7I, etc. Further, we analyzed the m6A modification characteristics of Co-m6AR in β-cell and identified 228 Co-m6AR containing m6A methylation sites, involving in several key signaling pathways regulating T2DM. We finally screened out 13 eQTL-SNPs localized in Co-m6ARs, and 4 have been reported strongly associated with diabetes, including GAB2, LMNB2, XAB2 and RBM39. This co-expression analysis provides important information to reveal the potential regulatory mechanism of RNA m6A methylation in T2DM.
机译:RNA M6A甲基化在2型糖尿病(T2DM)的发病机制中起着重要作用。 RNA修饰和RNA改性调节剂最近被出现为涉及β细胞功能和胰岛素抵抗的关键因素,包括“作家,”橡皮擦“和”读者“。然而,它们在调节T2DM中的基因表达中的关键作用仍然不清楚。共表达网络的构建可以提供一种解决这种复杂的调节途径的提示。我们收集了糖尿病患者中β细胞的转录组数据集,计算了部分相关系数,排除了糖尿病相关基因的控制变量的影响,并确定了用M6A调节剂明显地联合表达的基因。鉴定了总共有985个与M6A调节剂(CO-M6AR)共表达的基因,其富集于代谢过程,MAPK和EGFR信号通路。他们中的一些人已经证实在T2DM中发挥枢轴作用,包括CCNL2,CSAD,COX5A,GAB2,MIRLET7i等。此外,我们分析了β细胞中CO-M6AR的M6A改性特性,并确定了228个CO-M6AR M6A甲基化位点,涉及若干关键信号通路调节T2DM。我们最终筛选出13例EQTL-SNP,在CO-M6AR中定位,据报道4件与糖尿病有密切相关,包括GAB2,LMNB2,XAB2和RBM39。该共表达分析提供了重要信息,以揭示T2DM中RNA M6A甲基化的潜在调节机制。

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