Transcription profiling of skeletal muscle from diabetic or non-diabetic Mexican Americans with or without a family history of diabetes

  • Mary Elizabeth Patti (Contributor)
  • Atul J. Butte (Contributor)
  • Sarah Crunkhorn (Contributor)
  • Kenneth Cusi (Contributor)
  • Rachele Berria (Contributor)
  • Sangeeta R. Kashyap (Contributor)
  • Yoshinori Miyazaki (Contributor)
  • Isaac Kohane (Contributor)
  • Maura Costello (Contributor)
  • Robert Saccone (Contributor)
  • Edwin J. Landaker (Contributor)
  • Allison B. Goldfine (Contributor)
  • Edward Mun (Contributor)
  • Ralph A DeFronzo (Contributor)
  • Jean Finlayson (Contributor)
  • C. R. Kahn (Contributor)
  • Lawrence J. Mandarino (Contributor)



Type 2 diabetes mellitus (DM) is characterized by insulin resistance and pancreatic beta-cell dysfunction. In high-risk subjects, the earliest detectable abnormality is insulin resistance in skeletal muscle. Impaired insulin-mediated signaling, gene expression, and glycogen synthesis, and accumulation of intramyocellular triglycerides have all been linked with insulin resistance, but no specific defect responsible for insulin resistance and DM has been identified in humans. To identify genes potentially important in the pathogenesis of DM, we analyzed gene expression in skeletal muscle from healthy metabolically characterized nondiabetic (family history negative and positive for DM) and diabetic Mexican-American subjects. We demonstrate that insulin resistance and DM associate with reduced expression of multiple nuclear respiratory factor-1 (NRF-1)-dependent genes encoding key enzymes in oxidative metabolism and mitochondrial function. While NRF-1 expression is decreased only in diabetic subjects, expression of both PPARg coactivator 1-alpha and -beta (PGC1-a/PPARGC1, and PGC1-b/PERC), coactivators of NRF-1 and PPARg-dependent transcription, is decreased in both diabetic subjects and family history positive nondiabetic subjects. Decreased PGC1 expression may be responsible for decreased expression of NRFdependent genes, leading to the metabolic disturbances characteristic of insulin resistance and DM.
Date made available2007

Cite this