Abstract

My graduate and postdoctoral training in metabolism and enzymology eventually led me to study the short- and long-term regulation of glucose and lipid metabolism. In the early phase of my career, my trainees and I identified, purified, and characterized a variety of phosphofructokinase enzymes from mammalian tissues. These studies led us to discover fructose 2,6-P2, the most potent activator of phosphofructokinase and glycolysis. The discovery of fructose 2,6-P2 led to the identification and characterization of the tissue-specific bifunctional enzyme 6-phosphofructo-2-kinase:fructose 2,6-bisphosphatase. We discovered a glucose signaling mechanism by which the liver maintains glucose homeostasis by regulating the activities of this bifunctional enzyme. With a rise in glucose, a signaling metabolite, xylulose 5-phosphate, triggers rapid activation of a specific protein phosphatase (PP2ABδC), which dephosphorylates the bifunctional enzyme, thereby increasing fructose 2,6-P2 levels and upregulating glycolysis. These endeavors paved the way for us to initiate the later phase of my career in which we discovered a new transcription factor termed the carbohydrate response element binding protein (ChREBP). Now ChREBP is recognized as the masterregulator controlling conversion of excess carbohydrates to storage of fat in the liver. ChREBP functions as a central metabolic coordinator that responds to nutrients independently of insulin. The ChREBP transcription factor facilitates metabolic adaptation to excess glucose, leading to obesity and its associated diseases.

Highlights

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  • We unequivocally proved the structure of the activation factor as Fru-2,6-P2 by chemical synthesis via cyclization of β-d-Fru-1,6-P2 with dicyclohexylcarbodiimide to β-d-Fru-1,2-cyclic-6-P2, followed by alkali hydrolysis to form D-Fru-2,6-P2

  • We demonstrated that insulin administration and cardiac work applied to perfused rat hearts increased glycolysis, which correlated well with Fru-2,6-P2 levels but not with changes in effectors such as adenine nucleotides [45]

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Summary

Annual Review of Biochemistry

Short- and Long-Term Adaptation to Altered Levels of Glucose: Fifty Years of Scientific Adventure. Fructose 2,6-P2, 6-phosphofructo-2-kinase:fructose 2,6-bisphosphatase, bifunctional enzyme, glycolysis, lipogenesis, carbohydrate response element binding protein, ChREBP, glucose signaling, autobiography

Undergraduate Studies
Graduate Studies
Postdoctoral Fellowships
University of Texas Southwestern Medical School
OO P
Effect of Glucagon
Wild type
Findings
LITERATURE CITED
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