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The No-Go and Nonsense-Mediated RNA Decay Pathways Are Regulated by Inflammatory Cytokines in Insulin-Producing Cells and Human Islets and Determine β-Cell Insulin Biosynthesis and Survival

机译:胰岛素产生细胞和人胰岛中炎性细胞因子调节无用和无意义介导的RNA衰变途径,并确定β细胞胰岛素的生物合成和存活

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摘要

Stress-related changes in β-cell mRNA levels result from a balance between gene transcription and mRNA decay. The regulation of RNA decay pathways has not been investigated in pancreatic β-cells. We found that no-go and nonsense-mediated RNA decay pathway components (RDPCs) and exoribonuclease complexes were expressed in INS-1 cells and human islets. Pelo, Dcp2, Dis3L2, Upf2, and Smg1/5/6/7 were upregulated by inflammatory cytokines in INS-1 cells under conditions where central β-cell mRNAs were downregulated. These changes in RDPC mRNA or corresponding protein levels were largely confirmed in INS-1 cells and rat/ human islets. Cytokine-induced upregulation of Pelo, Xrn1, Dis3L2, Upf2, and Smg1/6 was reduced by induc-ible nitric oxide synthase inhibition, as were endoplasmic reticulum (ER) stress, inhibition of lns1/2 mRNA, and accumulated insulin secretion. Reactive oxygen species inhibition or iron chelation did not affect RDPC expression. Pelo or Xrn1 knockdown (KD) aggravated, whereas Smg6 KD ameliorated, cytokine-induced INS-1 cell death without affecting ER stress; both increased insulin biosynthesis and medium accumulation but not glucose-stimulated insulin secretion in cytokine-exposed INS-1 cells. In conclusion, RDPCs are regulated by inflammatory stress in β-cells. RDPC KD improved insulin biosynthesis, likely by preventing lns1/2 mRNA clearance. Pelo/Xrn1 KD aggravated, but Smg6 KD ameliorated, cytokine-mediated p-cell death, possibly through prevention of proapoptotic and anti-apoptotic mRNA degradation, respectively.
机译:β细胞mRNA水平与压力相关的变化是由于基因转录和mRNA衰减之间的平衡所致。尚未在胰腺β细胞中研究RNA衰变途径的调控。我们发现在INS-1细胞和人类胰岛中表达了无作用和无意义介导的RNA衰变途径组分(RDPC)和核糖核酸外切酶复合物。在中央β细胞mRNA下调的情况下,INS-1细胞中的炎性细胞因子上调了Pelo,Dcp2,Dis3L2,Upf2和Smg1 / 5/6/7。 RD-1 mRNA或相应蛋白质水平的这些变化在INS-1细胞和大鼠/人类胰岛中得到了充分证实。诱导型一氧化氮合酶抑制可减少细胞因子诱导的Pelo,Xrn1,Dis3L2,Upf2和Smg1 / 6的上调,内质网(ER)胁迫,Ins1 / 2 mRNA的抑制以及累积的胰岛素分泌也可以减少。活性氧抑制或铁螯合不影响RDPC表达。 Pelo或Xrn1敲低(KD)加剧,而Smg6 KD改善了细胞因子诱导的INS-1细胞死亡,而不影响ER应激;在暴露于细胞因子的INS-1细胞中,两者均增加了胰岛素的生物合成和培养基积累,但并未刺激葡萄糖刺激的胰岛素分泌。总之,RDPC受β细胞中的炎性应激调节。 RDPC KD可能通过防止lns1 / 2 mRNA清除来改善胰岛素的生物合成。 Pelo / Xrn1 KD可能加重,但Smg6 KD可能通过分别防止促凋亡和抗凋亡的mRNA降解而改善了细胞因子介导的p细胞死亡。

著录项

  • 来源
    《Diabetes》 |2018年第10期|2019-2037|共19页
  • 作者单位

    Department of Biomedical Sciences, University of Copenhagen, Copenhagen, Denmark;

    Department of Cellular and Molecular Medicine, University of Copenhagen, Copenhagen, Denmark;

    Translational Science, Cardiovascular, Renal and Metabolism, and IMED Biotech Unit, AstraZeneca, Gothenburg, Sweden;

    Department of Biomedical Sciences, University of Copenhagen, Copenhagen, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:08:38

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