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胰腺β细胞 tRNA 低甲基化和碎片化将 TRMT10A 缺乏与糖尿病联系起来。

Pancreatic β-cell tRNA hypomethylation and fragmentation link TRMT10A deficiency with diabetes.

机构信息

ULB Center for Diabetes Research, Université Libre de Bruxelles, 1070 Brussels, Belgium.

CEA/Grenoble, DRF/BIG/LCBM UMR5249, Grenoble, France.

出版信息

Nucleic Acids Res. 2018 Nov 2;46(19):10302-10318. doi: 10.1093/nar/gky839.

Abstract

Transfer RNAs (tRNAs) are non-coding RNA molecules essential for protein synthesis. Post-transcriptionally they are heavily modified to improve their function, folding and stability. Intronic polymorphisms in CDKAL1, a tRNA methylthiotransferase, are associated with increased type 2 diabetes risk. Loss-of-function mutations in TRMT10A, a tRNA methyltransferase, are a monogenic cause of early onset diabetes and microcephaly. Here we confirm the role of TRMT10A as a guanosine 9 tRNA methyltransferase, and identify tRNAGln and tRNAiMeth as two of its targets. Using RNA interference and induced pluripotent stem cell-derived pancreatic β-like cells from healthy controls and TRMT10A-deficient patients we demonstrate that TRMT10A deficiency induces oxidative stress and triggers the intrinsic pathway of apoptosis in β-cells. We show that tRNA guanosine 9 hypomethylation leads to tRNAGln fragmentation and that 5'-tRNAGln fragments mediate TRMT10A deficiency-induced β-cell death. This study unmasks tRNA hypomethylation and fragmentation as a hitherto unknown mechanism of pancreatic β-cell demise relevant to monogenic and polygenic forms of diabetes.

摘要

转移 RNA(tRNA)是蛋白质合成所必需的非编码 RNA 分子。在转录后,它们会被大量修饰以提高其功能、折叠和稳定性。CDKAL1 中的内含子多态性是一种 tRNA 甲基转移酶,与 2 型糖尿病风险增加有关。TRMT10A(一种 tRNA 甲基转移酶)的失活突变是早发性糖尿病和小头畸形的单基因原因。在这里,我们证实了 TRMT10A 作为鸟苷 9 tRNA 甲基转移酶的作用,并确定 tRNAGln 和 tRNAiMeth 是其两个靶标。使用 RNA 干扰和来自健康对照和 TRMT10A 缺陷患者的诱导多能干细胞衍生的胰腺β样细胞,我们证明 TRMT10A 缺陷诱导氧化应激并触发β细胞中的内在凋亡途径。我们表明 tRNA 鸟苷 9 低甲基化导致 tRNAGln 片段化,并且 5'-tRNAGln 片段介导 TRMT10A 缺陷诱导的β细胞死亡。这项研究揭示了 tRNA 低甲基化和片段化为一种未知的胰腺β细胞死亡机制,与单基因和多基因形式的糖尿病有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bc7/6212784/1512589e2442/gky839fig1.jpg

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