The Lin28/let-7 Axis Regulates Glucose Metabolism

H Zhu, N Shyh-Chang, AV Segre, G Shinoda, SP Shah, WS Einhorn, A Takeuchi, JM Engreitz, JP Hagan, MG Kharas, A Urbach, JE Thornton, R Triboulet, RI Gregory, D Altshuler, GQ Daley

Research output: Contribution to journalArticleAcademicpeer-review

775 Citations (Scopus)

Abstract

The let-7 tumor suppressor microRNAs are known for their regulation of oncogenes, while the RNA-binding proteins Lin28a/b promote malignancy by inhibiting let-7 biogenesis. We have uncovered unexpected roles for the Lin28/let-7 pathway in regulating-metabolism. When overexpressed in mice, both Lin28a and LIN28B promote an insulin-sensitized state that resists high-fat-diet induced diabetes. Conversely, muscle-specific loss of Lin28a or overexpression of let-7 results in insulin resistance and impaired glucose tolerance. These phenomena occur, in part, through the let-7-mediated repression of multiple components of the insulin-PI3K-mTOR pathway, including IGF1R, INSR, and IRS2. In addition, them TOR inhibitor, rapamycin, abrogates Lin28a-mediated insulin sensitivity and enhanced glucose uptake. Moreover, let-7 targets are enriched for genes containing SNPs associated with type 2 diabetes and control of fasting glucose in human genome-wide association studies. These data establish the Lin28/let-7 pathway as a central regulator of mammalian glucose metabolism.
Original languageUndefined/Unknown
Pages (from-to)81-94
Number of pages14
JournalCell
Volume147
Issue number1
DOIs
Publication statusPublished - 2011
Externally publishedYes

Research programs

  • EMC COEUR-09
  • EMC MGC-02-96-01
  • EMC MM-01-39-09-A

Cite this