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This version published online on March 20, 2008
Molecular Endocrinology, doi:10.1210/me.2007-0538
A more recent version of this article appeared on September 1, 2008
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Submitted on December 3, 2007
Accepted on March 10, 2008

HYPOTHALAMIC MALONYL-CoA AND THE CONTROL OF ENERGY BALANCE

Michael J. Wolfgang and M. Daniel Lane*

Department of Biological Chemistry, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205

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

An intermediate in the fatty acid biosynthetic pathway, malonyl-CoA, has emerged as a major regulator of energy homeostasis not only in peripheral metabolic tissues, but also in regions of the central nervous system that control satiety and energy expenditure. Fluctuations in hypothalamic malonyl-CoA lead to changes in food intake and peripheral energy expenditure in a manner consistent with an anorexogenic signaling intermediate. Hypothalamic malonyl-CoA is regulated by nutritional and endocrine cues including glucose and leptin, respectively. That malonyl-CoA is an essential component in energy homeostatic signaling system of the hypothalamus is supported by convergence of physiological, pharmacological, and genetic evidence. This review will focus on evidence implicating malonyl-CoA as a central player in the control of body weight and adiposity as well as clues to the molecular mechanism by which carbon flux through the fatty acid biosynthetic pathway is linked to the neural control of energy balance.


Key words: fatty acid synthase • AMPK • CPT1c • acetyl-CoA carboxylase • obesity • leptin







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