Deficit of tRNALys modification by Cdkal1 causes the development of type 2 diabetes in mice
Deficit of tRNALys modification by Cdkal1 causes the development of type 2 diabetes in mice
The worldwide prevalence of type 2 diabetes (T2D), which is caused by a combination of environmental and genetic factors, is increasing. With regard to genetic factors, variations in the gene encoding Cdk5 regulatory associated protein 1-like 1 (Cdkal1) have been associated with an impaired insulin response and increased risk of T2D across different ethnic populations, but the molecular function of this protein has not been characterized. Here, we show that Cdkal1 is a mammalian methylthiotransferase that biosynthesizes 2-methylthio-N6-threonylcarbamoyladenosine (ms2t6A) in tRNA(Lys)(UUU) and that it is required for the accurate translation of AAA and AAG codons. Mice with pancreatic β cell-specific KO of Cdkal1 (referred to herein as β cell KO mice) showed pancreatic islet hypertrophy, a decrease in insulin secretion, and impaired blood glucose control. In Cdkal1-deficient β cells, misreading of Lys codon in proinsulin occurred, resulting in a reduction of glucose-stimulated proinsulin synthesis. Moreover, expression of ER stress-related genes was upregulated in these cells, and abnormally structured ER was observed. Further, the β cell KO mice were hypersensitive to high fat diet-induced ER stress. These findings suggest that glucose-stimulated translation of proinsulin may require fully modified tRNA(Lys)(UUU), which could potentially explain the molecular pathogenesis of T2D in patients carrying cdkal1 risk alleles.
- Institut de Chimie France
- Kumamoto University Japan
- Collège de France France
- Sorbonne University France
- University of Tokyo Japan
[CHIM.INOR] Chemical Sciences/Inorganic chemistry, Mice, Knockout, Threonine, Adenosine, Recombinant Fusion Proteins, Cyclin-Dependent Kinase 5, Mice, Transgenic, Nerve Tissue Proteins, RNA, Transfer, Amino Acyl, Glucagon, Cell Line, Mice, Glucose, HEK293 Cells, Diabetes Mellitus, Type 2, Genes, Reporter, Protein Biosynthesis, Animals, Humans, Nucleic Acid Conformation, Proinsulin
[CHIM.INOR] Chemical Sciences/Inorganic chemistry, Mice, Knockout, Threonine, Adenosine, Recombinant Fusion Proteins, Cyclin-Dependent Kinase 5, Mice, Transgenic, Nerve Tissue Proteins, RNA, Transfer, Amino Acyl, Glucagon, Cell Line, Mice, Glucose, HEK293 Cells, Diabetes Mellitus, Type 2, Genes, Reporter, Protein Biosynthesis, Animals, Humans, Nucleic Acid Conformation, Proinsulin
27 Research products, page 1 of 3
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
chevron_left - 1
- 2
- 3
chevron_right
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).216 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 1% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Top 10% impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Top 1%
