糖异生
基因表达
生物
葡萄糖稳态
下调和上调
细胞生物学
信使核糖核酸
基因表达调控
体内
磷酸化
胰岛素
基因
化学
内分泌学
内科学
生物化学
新陈代谢
胰岛素抵抗
遗传学
医学
作者
Bandish Kapadia,Soma Behera,Sireesh T. Kumar,Tapan Shah,Rebecca Kristina Edwin,Phanithi Prakash Babu,Partha Chakrabarti,Kishore VL. Parsa,Parimal Misra
出处
期刊:iScience
[Elsevier]
日期:2023-03-01
卷期号:26 (3): 106120-106120
被引量:2
标识
DOI:10.1016/j.isci.2023.106120
摘要
The physiological and metabolic functions of PIMT/TGS1, a third-generation transcriptional apparatus protein, in glucose homeostasis sustenance are unclear. Here, we observed that the expression of PIMT was upregulated in the livers of short-term fasted and obese mice. Lentiviruses expressing Tgs1-specific shRNA or cDNA were injected into wild-type mice. Gene expression, hepatic glucose output, glucose tolerance, and insulin sensitivity were evaluated in mice and primary hepatocytes. Genetic modulation of PIMT exerted a direct positive impact on the gluconeogenic gene expression program and hepatic glucose output. Molecular studies utilizing cultured cells, in vivo models, genetic manipulation, and PKA pharmacological inhibition establish that PKA regulates PIMT at post-transcriptional/translational and post-translational levels. PKA enhanced 3'UTR-mediated translation of TGS1 mRNA and phosphorylated PIMT at Ser656, increasing Ep300-mediated gluconeogenic transcriptional activity. The PKA-PIMT-Ep300 signaling module and associated PIMT regulation may serve as a key driver of gluconeogenesis, positioning PIMT as a critical hepatic glucose sensor.
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