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Cdkal1, a type 2 diabetes susceptibility gene, regulates mitochondrial function in adipose tissue

Molecular Metabolism. 2023-06; 
Colin J. Palmer; Raphael J. Bruckner; Joao A. Paulo; Lawrence Kazak; Jonathan Z. Long; Amir I. Mina; Zhaoming Deng; Katherine B. LeClair; Jessica A. Hall; Shangyu Hong; Peter-James H. Zushin; Kyle L. Smith; Steven P. Gygi; Susan Hagen; David E. Cohen; Alexander S. Banks
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Custom Vector Construction -immunoprecipitation of FLAG-tagged ANT1 and Cdkal1 HEK293 cells were transfected with empty pcDNA 3.1 vector or pcDNA 3.1 vectors expressing FLAG-Slc25a4/ANT1 (Genscript, Clone#OHu22413) or FLAG-tagged mutants of Cdkal1. Transfected cells were harvested and lysed in non-ionic coIP buffer (50 mM Tris HCl, 150 mM NaCl, Get A Quote

摘要

Objectives Understanding how loci identified by genome wide association studies (GWAS) contribute to pathogenesis requires new mechanistic insights. Variants within CDKAL1 are strongly linked to an increased risk of developing type 2 diabetes and obesity. Investigations in mouse models have focused on the function of Cdkal1 as a tRNA Lys modifier and downstream effects of Cdkal1 loss on pro-insulin translational fidelity in pancreatic cells. However, Cdkal1 is broadly expressed in other metabolically relevant tissues, including adipose tissue. In addition, the Cdkal1 homolog Cdk5rap1 regulates mitochondrial protein translation and mitochondrial function in skeletal muscle. We tested whether adipocyte-specific C... More

关键词

Cdkal1, GWAS, Diabetes, Adipose, Mitochondria, ANT1, CDKAL1, CDK5 regulatory subunit associated protein 1 like 1, CDK5RAP1, CDK5 regulatory subunit associated protein 1, HFD, high-fat diet, A-KO, adipose-specific Cdkal1 KO, OCR, Oxygen consumption rate, Lys, lysine