...
首页> 外文期刊>Molecular Metabolism >Circular RNAs as novel regulators of β-cell functions in normal and disease conditions
【24h】

Circular RNAs as novel regulators of β-cell functions in normal and disease conditions

机译:环状RNA作为正常和疾病条件下β细胞功能的新型调节剂

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Objective There is strong evidence for an involvement of different classes of non-coding RNAs, including microRNAs and long non-coding RNAs, in the regulation of β-cell activities and in diabetes development. Circular RNAs were recently discovered to constitute a substantial fraction of the mammalian transcriptome but the contribution of these non-coding RNAs in physiological and disease processes remains largely unknown. The goal of this study was to identify the circular RNAs expressed in pancreatic islets and to elucidate their possible role in the control of β-cells functions. Methods We used a microarray approach to identify circular RNAs expressed in human islets and searched their orthologues in RNA sequencing data from mouse islets. We then measured the level of four selected circular RNAs in the islets of different Type 1 and Type 2 diabetes models and analyzed the role of these circular transcripts in the regulation of insulin secretion, β-cell proliferation, and apoptosis. Results We identified thousands of circular RNAs expressed in human pancreatic islets, 497 of which were conserved in mouse islets. The level of two of these circular transcripts, circHIPK3 and ciRS-7/CDR1as, was found to be reduced in the islets of diabetic db/db mice. Mimicking this decrease in the islets of wild type animals resulted in impaired insulin secretion, reduced β-cell proliferation, and survival. ciRS-7/CDR1as has been previously proposed to function by blocking miR-7. Transcriptomic analysis revealed that circHIPK3 acts by sequestering a group of microRNAs, including miR-124-3p and miR-338-3p, and by regulating the expression of key β-cell genes, such as Slc2a2 , Akt1 , and Mtpn . Conclusions Our findings point to circular RNAs as novel regulators of β-cell activities and suggest an involvement of this novel class of non-coding RNAs in β-cell dysfunction under diabetic conditions.
机译:目的强有力的证据表明,不同种类的非编码RNA,包括微RNA和长的非编码RNA,都参与了β细胞活性的调节和糖尿病的发展。最近发现环状RNA构成了哺乳动物转录组的重要组成部分,但是这些非编码RNA在生理和疾病过程中的贡献仍然未知。这项研究的目的是鉴定在胰岛中表达的环状RNA,并阐明它们在控制β细胞功能中的可能作用。方法我们使用微阵列方法鉴定了在人类胰岛中表达的环状RNA,并在小鼠胰岛的RNA测序数据中搜索了它们的直向同源物。然后,我们在不同的1型和2型糖尿病模型的胰岛中测量了四种选定的环状RNA的水平,并分析了这些环状转录本在调节胰岛素分泌,β细胞增殖和凋亡中的作用。结果我们鉴定了在人类胰岛中表达的数千种环状RNA,其中497个在小鼠胰岛中保守。发现在糖尿病db / db小鼠的胰岛中,这些环状转录物中的两个环状转录物circHIPK3和ciRS-7 / CDR1as的水平降低。模仿野生型动物的胰岛中的这种减少导致胰岛素分泌受损,β细胞增殖减少和存活。先前已提出ciRS-7 / CDR1as通过阻断miR-7发挥功能。转录组学分析显示,circHIPK3通过隔离包括miR-124-3p和miR-338-3p的一组microRNA,并通过调节关键的β细胞基因(如Slc2a2,Akt1和Mtpn)的表达来发挥作用。结论我们的发现将环状RNAs作为β细胞活性的新型调节剂,并提示这种新型的非编码RNA参与了糖尿病条件下β细胞功能异常。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号