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This version published online on September 21, 2006
Endocrinology, doi:10.1210/en.2006-0541
A more recent version of this article appeared on December 1, 2006
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Submitted on April 24, 2006
Accepted on September 13, 2006

Aberrant FoxO1 Function Is Associated with Impaired Hepatic Metabolism

Shen Qu, Jennifer Altomonte, German Perdomo, Jing He, Yong Fan, Adama Kamagate, Marcia Meseck, and H. Henry Dong*

Rangos Research Center, Children's Hospital of Pittsburgh, Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213; Department of Gene & Cell Medicine, Mount Sinai School of Medicine, New York, NY 10029

* To whom correspondence should be addressed. E-mail: dongh{at}pitt.edu.

FoxO1 plays an important role in mediating the effect of insulin on hepatic metabolism. Increased FoxO1 activity is associated with reduced ability of insulin to regulate hepatic glucose production. However, the underlying mechanism and physiology remain unknown. We studied the effect of FoxO1 on the ability of insulin to regulate hepatic metabolism in normal vs. insulin resistant liver under fed and fasting conditions. FoxO1 gain-of-function, as a result of adenovirus-mediated or transgenic expression, augmented hepatic gluconeogenesis, accompanied by decreased glycogen content and increased fat deposition in liver. Mice with excessive FoxO1 activity exhibited impaired glucose tolerance. Conversely, FoxO1 loss-of-function, caused by hepatic production of its dominant-negative variant, suppressed hepatic gluconeogenesis, resulting in enhanced glucose disposal and improved insulin sensitivity in db/db mice. FoxO1 expression becomes deregulated, culminating in increased nuclear localization and accounting for its increased transcription activity in livers of both high fat-induced obese mice and diabetic db/db mice. Increased FoxO1 activity resulted in up-regulation of hepatic PGC-1{beta}, FAS and ACC expression, accounting for increased hepatic fat infiltration. These data indicate that hepatic FoxO1 deregulation impairs the ability of insulin to regulate hepatic metabolism, contributing to the development of hepatic steatosis and abnormal metabolism in diabetes.


Key words: FoxO1 • Gluconeogenesis • Lipogenesis • Diabetes • Mice




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Am. J. Physiol. Endocrinol. Metab.Home page
S. Qu, D. Su, J. Altomonte, A. Kamagate, J. He, G. Perdomo, T. Tse, Y. Jiang, and H. H. Dong
PPAR{alpha} mediates the hypolipidemic action of fibrates by antagonizing FoxO1
Am J Physiol Endocrinol Metab, February 1, 2007; 292(2): E421 - E434.
[Abstract] [Full Text] [PDF]




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