mA mRNA Methylation Regulates Human β-Cell Biology in Physiological States and in Type 2 Diabetes.
| Citation | De Jesus, Dario F, et al. “MA MRNA Methylation Regulates Human β-Cell Biology in Physiological States and in Type 2 Diabetes”. 2019. Nature Metabolism, vol. 1, no. 8, 2019, pp. 765–774.  | 
       
| Center | Joslin Diabetes Center | 
| Author | Dario F De Jesus, Zijie Zhang, Sevim Kahraman, Natalie K Brown, Mengjie Chen, Jiang Hu, Manoj K Gupta, Chuan He, Rohit N Kulkarni | 
| Abstract | 
   The regulation of islet cell biology is critical for glucose homeostasis. -methyladenosine (mA) is the most abundant internal messenger RNA (mRNA) modification in mammals. Here we report that the mA landscape segregates human type 2 diabetes (T2D) islets from controls significantly better than the transcriptome and that mA is vital for β-cell biology. mA-sequencing in human T2D islets reveals several hypomethylated transcripts involved in cell-cycle progression, insulin secretion, and the Insulin/IGF1-AKT-PDX1 pathway. Depletion of mA levels in EndoC-βH1 induces cell-cycle arrest and impairs insulin secretion by decreasing AKT phosphorylation and PDX1 protein levels. β-cell specific Mettl14 knock-out mice, which display reduced mA levels, mimic the islet phenotype in human T2D with early diabetes onset and mortality due to decreased β-cell proliferation and insulin degranulation. Our data underscore the significance of RNA methylation in regulating human β-cell biology, and provide a rationale for potential therapeutic targeting of mA modulators to preserve β-cell survival and function in diabetes.  | 
        
| Year of Publication | 
   2019 
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| Journal | 
   Nature metabolism 
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| Volume | 
   1 
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| Issue | 
   8 
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| Number of Pages | 
   765-774 
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| Date Published | 
   08/2019 
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| ISSN Number | 
   2522-5812 
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| DOI | 
   10.1038/s42255-019-0089-9 
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| Alternate Journal | 
   Nat Metab 
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| PMCID | 
   PMC6924515 
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| PMID | 
   31867565 
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