The mechanisms underlying inflammation induced insulin resistance are poorly understood. Here, we report that the expression of PIMT, a transcriptional co-activator binding protein, was up-regulated in the soleus muscle of high sucrose diet (HSD) induced insulin resistant rats and TNF-α exposed cultured myoblasts. Moreover, TNF-α induced phosphorylation of PIMT at the ERK1/2 target site Ser(298). Wild type (WT) PIMT or phospho-mimic Ser298Asp mutant but not phospho-deficient Ser298Ala PIMT mutant abrogated insulin stimulated glucose uptake by L6 myotubes and neonatal rat skeletal myoblasts. Whereas, PIMT knock down relieved TNF-α inhibited insulin signaling. Mechanistic analysis revealed that PIMT differentially regulated the expression of GLUT4, MEF2A, PGC-1α and HDAC5 in cultured cells and skeletal muscle of Wistar rats. Further characterization showed that PIMT was recruited to GLUT4, MEF2A and HDAC5 promoters and overexpression of PIMT abolished the activity of WT but not MEF2A binding defective mutant GLUT4 promoter. Collectively, we conclude that PIMT mediates TNF-α induced insulin resistance at the skeletal muscle via the transcriptional modulation of GLUT4, MEF2A, PGC-1α and HDAC5 genes.
Co-activator binding protein PIMT mediates TNF-α induced insulin resistance in skeletal muscle via the transcriptional down-regulation of MEF2A and GLUT4.
辅激活因子结合蛋白PIMT通过转录下调MEF2A和GLUT4介导TNF-α诱导的骨骼肌胰岛素抵抗
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作者:Kain Vasundhara, Kapadia Bandish, Viswakarma Navin, Seshadri Sriram, Prajapati Bhumika, Jena Prasant K, Teja Meda Chandana Lakshmi, Subramanian Maitreyi, Kaimal Suraj Sashidhara, Kumar Sireesh T, Prakash Babu Phanithi, Thimmapaya Bayar, Reddy Janardan K, Parsa Kishore V L, Misra Parimal
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2015 | 起止号: | 2015 Oct 15; 5:15197 |
| doi: | 10.1038/srep15197 | 研究方向: | 代谢 |
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