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Transcriptional and translational downregulation of thioredoxin interacting protein is required for metabolic reprogramming during G1

Publication ,  Journal Article
Elgort, MG; O'Shea, JM; Jiang, Y; Ayer, DE
Published in: Genes and Cancer
December 1, 2010

Growth factor signaling drives increased glucose uptake and glycolysis-the Warburg effect-that supports macromolecular synthesis necessary for cell growth and proliferation. Thioredoxin interacting protein (TXNIP), a direct and glucose-induced transcriptional target of MondoA, is a potent negative regulator of glucose uptake and utilization. Thus, TXNIP may inhibit cell growth by restricting substrate availability for macromolecular synthesis. To determine TXNIP's contribution to metabolic reprogramming, we examined MondoA and TXNIP as cells exit quiescence and enter G1. Serum stimulation of quiescent immortal diploid fibroblasts resulted in an acute upregulation of glucose uptake and glycolysis coinciding with downregulation of TXNIP expression. Ectopic expression of either MondoA or TXNIP restricted cell growth by blocking glucose uptake. Mechanistically, Ras-MAPK and PI3K/ Akt signaling inhibit TXNIP translation and MondoA-dependent TXNIP transcription, respectively. We propose that the coordinated downregulation of MondoA transcriptional activity at the TXNIP promoter and inhibition of TXNIP translation are key components of metabolic reprogramming required for cells to exit quiescence. © The Author(s) 2010.

Duke Scholars

Published In

Genes and Cancer

DOI

EISSN

1947-6027

ISSN

1947-6019

Publication Date

December 1, 2010

Volume

1

Issue

9

Start / End Page

893 / 907
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Elgort, M. G., O’Shea, J. M., Jiang, Y., & Ayer, D. E. (2010). Transcriptional and translational downregulation of thioredoxin interacting protein is required for metabolic reprogramming during G1. Genes and Cancer, 1(9), 893–907. https://doi.org/10.1177/1947601910389604
Elgort, M. G., J. M. O’Shea, Y. Jiang, and D. E. Ayer. “Transcriptional and translational downregulation of thioredoxin interacting protein is required for metabolic reprogramming during G1.” Genes and Cancer 1, no. 9 (December 1, 2010): 893–907. https://doi.org/10.1177/1947601910389604.
Elgort, M. G., et al. “Transcriptional and translational downregulation of thioredoxin interacting protein is required for metabolic reprogramming during G1.” Genes and Cancer, vol. 1, no. 9, Dec. 2010, pp. 893–907. Scopus, doi:10.1177/1947601910389604.

Published In

Genes and Cancer

DOI

EISSN

1947-6027

ISSN

1947-6019

Publication Date

December 1, 2010

Volume

1

Issue

9

Start / End Page

893 / 907