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对胰岛进行全转录组测序分析,揭示了高脂肪饮食诱导的糖尿病中胰岛素分泌受损和β细胞量增加的 ncRNA 调控网络。

Whole transcriptome sequencing analyses of islets reveal ncRNA regulatory networks underlying impaired insulin secretion and increased β-cell mass in high fat diet-induced diabetes mellitus.

机构信息

Department of Endocrinology and Metabolism, West China Hospital, Sichuan University, Chengdu, China.

Center for Diabetes and Metabolism Research, West China Hospital, Sichuan University, Chengdu, China.

出版信息

PLoS One. 2024 Apr 1;19(4):e0300965. doi: 10.1371/journal.pone.0300965. eCollection 2024.

Abstract

AIM

Our study aims to identify novel non-coding RNA-mRNA regulatory networks associated with β-cell dysfunction and compensatory responses in obesity-related diabetes.

METHODS

Glucose metabolism, islet architecture and secretion, and insulin sensitivity were characterized in C57BL/6J mice fed on a 60% high-fat diet (HFD) or control for 24 weeks. Islets were isolated for whole transcriptome sequencing to identify differentially expressed (DE) mRNAs, miRNAs, IncRNAs, and circRNAs. Regulatory networks involving miRNA-mRNA, lncRNA-mRNA, and lncRNA-miRNA-mRNA were constructed and functions were assessed through Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses.

RESULTS

Despite compensatory hyperinsulinemia and a significant increase in β-cell mass with a slow rate of proliferation, HFD mice exhibited impaired glucose tolerance. In isolated islets, insulin secretion in response to glucose and palmitic acid deteriorated after 24 weeks of HFD. Whole transcriptomic sequencing identified a total of 1324 DE mRNAs, 14 DE miRNAs, 179 DE lncRNAs, and 680 DE circRNAs. Our transcriptomic dataset unveiled several core regulatory axes involved in the impaired insulin secretion in HFD mice, such as miR-6948-5p/Cacna1c, miR-6964-3p/Cacna1b, miR-3572-5p/Hk2, miR-3572-5p/Cckar and miR-677-5p/Camk2d. Additionally, proliferative and apoptotic targets, including miR-216a-3p/FKBP5, miR-670-3p/Foxo3, miR-677-5p/RIPK1, miR-802-3p/Smad2 and ENSMUST00000176781/Caspase9 possibly contribute to the increased β-cell mass in HFD islets. Furthermore, competing endogenous RNAs (ceRNA) regulatory network involving 7 DE miRNAs, 15 DE lncRNAs and 38 DE mRNAs might also participate in the development of HFD-induced diabetes.

CONCLUSIONS

The comprehensive whole transcriptomic sequencing revealed novel non-coding RNA-mRNA regulatory networks associated with impaired insulin secretion and increased β-cell mass in obesity-related diabetes.

摘要

目的

本研究旨在鉴定与肥胖相关糖尿病中β细胞功能障碍和代偿反应相关的新型非编码 RNA-mRNA 调控网络。

方法

用 60%高脂肪饮食(HFD)或对照喂养 24 周的 C57BL/6J 小鼠,对其葡萄糖代谢、胰岛结构和分泌以及胰岛素敏感性进行了特征分析。分离胰岛进行全转录组测序,以鉴定差异表达(DE)mRNA、miRNA、IncRNA 和 circRNA。构建 miRNA-mRNA、lncRNA-mRNA 和 lncRNA-miRNA-mRNA 调控网络,并通过基因本体论(GO)和京都基因与基因组百科全书(KEGG)富集分析评估功能。

结果

尽管存在代偿性高胰岛素血症和β细胞质量的显著增加,但 HFD 小鼠表现出葡萄糖耐量受损。在分离的胰岛中,HFD 24 周后,葡萄糖和棕榈酸刺激的胰岛素分泌恶化。全转录组测序共鉴定出 1324 个 DE mRNAs、14 个 DE miRNAs、179 个 DE IncRNAs 和 680 个 DE circRNAs。我们的转录组数据集揭示了几个核心调控轴,涉及 HFD 小鼠胰岛素分泌受损,如 miR-6948-5p/Cacna1c、miR-6964-3p/Cacna1b、miR-3572-5p/Hk2、miR-3572-5p/Cckar 和 miR-677-5p/Camk2d。此外,增殖和凋亡靶标,包括 miR-216a-3p/FKBP5、miR-670-3p/Foxo3、miR-677-5p/RIPK1、miR-802-3p/Smad2 和 ENSMUST00000176781/Caspase9,可能有助于 HFD 胰岛中β细胞质量的增加。此外,涉及 7 个 DE miRNAs、15 个 DE IncRNAs 和 38 个 DE mRNAs 的竞争内源性 RNA(ceRNA)调控网络也可能参与肥胖相关糖尿病的发展。

结论

全面的全转录组测序揭示了与肥胖相关糖尿病中胰岛素分泌受损和β细胞质量增加相关的新型非编码 RNA-mRNA 调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4804/10984535/25a0ecff0ef3/pone.0300965.g001.jpg

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