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鉴定宫内生长受限诱导的大鼠胰岛新型调控区域。

Identification of Novel Regulatory Regions Induced by Intrauterine Growth Restriction in Rat Islets.

机构信息

Center for Research on Reproduction and Women's Health, Perelman School of Medicine, the University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

Division of Neonatology, Department of Pediatrics, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, USA.

出版信息

Endocrinology. 2022 Feb 1;163(2). doi: 10.1210/endocr/bqab251.

Abstract

Intrauterine growth restriction (IUGR) leads to the development of type 2 diabetes in adulthood, and the permanent alterations in gene expression implicate an epigenetic mechanism. Using a rat model of IUGR, we performed TrueSeq-HELP Tagging to assess the association of DNA methylation changes and gene dysregulation in islets. We identified 511 differentially methylated regions (DMRs) and 4377 significantly altered single CpG sites. Integrating the methylome and our published transcriptome data sets resulted in the identification of pathways critical for islet function. The identified DMRs were enriched with transcription factor binding motifs, such as Elk1, Etv1, Foxa1, Foxa2, Pax7, Stat3, Hnf1, and AR. In silico analysis of 3-dimensional chromosomal interactions using human pancreas and islet Hi-C data sets identified interactions between 14 highly conserved DMRs and 35 genes with significant expression changes at an early age, many of which persisted in adult islets. In adult islets, there were far more interactions between DMRs and genes with significant expression changes identified with Hi-C, and most of them were critical to islet metabolism and insulin secretion. The methylome was integrated with our published genome-wide histone modification data sets from IUGR islets, resulting in further characterization of important regulatory regions of the genome altered by IUGR containing both significant changes in DNA methylation and specific histone marks. We identified novel regulatory regions in islets after exposure to IUGR, suggesting that epigenetic changes at key transcription factor binding motifs and other gene regulatory regions may contribute to gene dysregulation and an abnormal islet phenotype in IUGR rats.

摘要

宫内生长受限(IUGR)会导致成年后患 2 型糖尿病,而基因表达的永久性改变暗示存在表观遗传机制。我们使用 IUGR 大鼠模型进行了 TrueSeq-HELP Tagging,以评估胰岛中 DNA 甲基化变化和基因失调的关联。我们鉴定了 511 个差异甲基化区域(DMR)和 4377 个显著改变的单个 CpG 位点。将甲基组和我们已发表的转录组数据集整合在一起,确定了对胰岛功能至关重要的途径。鉴定的 DMR 富含转录因子结合基序,如 Elk1、Etv1、Foxa1、Foxa2、Pax7、Stat3、Hnf1 和 AR。使用人类胰腺和胰岛 Hi-C 数据集进行的 3 维染色体相互作用的计算机分析鉴定了 14 个高度保守的 DMR 与 35 个具有早期显著表达变化的基因之间的相互作用,其中许多在成年胰岛中持续存在。在成年胰岛中,Hi-C 鉴定的 DMR 与具有显著表达变化的基因之间的相互作用要多得多,其中大多数对胰岛代谢和胰岛素分泌至关重要。甲基组与我们已发表的 IUGR 胰岛全基因组组蛋白修饰数据集进行了整合,进一步表征了 IUGR 改变的基因组的重要调控区域,这些区域既包含 DNA 甲基化的显著变化,也包含特定的组蛋白标记。我们在胰岛中发现了 IUGR 后新的调控区域,这表明关键转录因子结合基序和其他基因调控区域的表观遗传变化可能导致 IUGR 大鼠的基因失调和异常胰岛表型。

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