The activity of the pyruvate dehydrogenase complex (PDC) is regulated by interconversion of phosphorylated (inactive) and non-phosphorylated (active) forms of the complex. Phosphorylation is catalyzed by four pyruvate dehydrogenase kinase (PDK) isoenzyes; dephosphorylation by two pyruvate dehydrogenase phosphatase (PDP) isoenzymes. Unique regulatory properties of these isoenzymes and differences in their levels of expression in different cell types provide tissue specific control of the activity of PDC. The impetus for this work is our recent finding that one of the PDK isoenzymes, PDK4, is markedly increased in the tissues of insulin-deficient rats. We propose that altered expression this PDK isoenzyme is an important component of the regulatory mechanisms triggered by insulin deficiency to conserve glucose and the three-carbon compounds required for glucose synthesis. Our working hypothesis is that alterations in the expression of the genes encoding the PDK isoenzymes are responsible for the hyperphosphorylation and therefore inactivation of PDC in metabolically important tissues during insulin deficiency. The hypothesis will be tested by: (a) quantifying the changes that occur in expression of the PDK isoenzymes in metabolically important tissues in insulin deficient and resistant states, (b) identifying the physiologically important factors that regulate PDK4 expression, and (c) determining the molecular mechanism responsible for the large increase in message level of PDK4 that occurs in tissues in response to insulin deficiency. We believe the findings of this study will provide new insight with respect to a regulatory mechanism crucial for glucose homeostasis. It will also contribute to our understanding of why consumption of the typical Western diet inappropriately spares carbohydrate from oxidation and promotes the development of type 2 diabetes.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
2R01DK047844-05A1
Application #
2760262
Study Section
Medical Biochemistry Study Section (MEDB)
Program Officer
Laughlin, Maren R
Project Start
1994-06-01
Project End
2003-11-30
Budget Start
1999-03-15
Budget End
1999-11-30
Support Year
5
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Indiana University-Purdue University at Indianapolis
Department
Biochemistry
Type
Schools of Medicine
DUNS #
005436803
City
Indianapolis
State
IN
Country
United States
Zip Code
46202
Hwang, Byounghoon; Wu, Pengfei; Harris, Robert A (2012) Additive effects of clofibric acid and pyruvate dehydrogenase kinase isoenzyme 4 (PDK4) deficiency on hepatic steatosis in mice fed a high saturated fat diet. FEBS J 279:1883-93
Jeoung, Nam Ho; Rahimi, Yasmeen; Wu, Pengfei et al. (2012) Fasting induces ketoacidosis and hypothermia in PDHK2/PDHK4-double-knockout mice. Biochem J 443:829-39
Halim, Nader D; Mcfate, Thomas; Mohyeldin, Ahmed et al. (2010) Phosphorylation status of pyruvate dehydrogenase distinguishes metabolic phenotypes of cultured rat brain astrocytes and neurons. Glia 58:1168-76
Hwang, Byounghoon; Jeoung, Nam Ho; Harris, Robert A (2009) Pyruvate dehydrogenase kinase isoenzyme 4 (PDHK4) deficiency attenuates the long-term negative effects of a high-saturated fat diet. Biochem J 423:243-52
Aponte, Angel M; Phillips, Darci; Hopper, Rachel K et al. (2009) Use of (32)P to study dynamics of the mitochondrial phosphoproteome. J Proteome Res 8:2679-95
Jeoung, Nam Ho; Harris, Robert A (2008) Pyruvate dehydrogenase kinase-4 deficiency lowers blood glucose and improves glucose tolerance in diet-induced obese mice. Am J Physiol Endocrinol Metab 295:E46-54
Aragones, Julian; Schneider, Martin; Van Geyte, Katie et al. (2008) Deficiency or inhibition of oxygen sensor Phd1 induces hypoxia tolerance by reprogramming basal metabolism. Nat Genet 40:170-80
McFate, Thomas; Mohyeldin, Ahmed; Lu, Huasheng et al. (2008) Pyruvate dehydrogenase complex activity controls metabolic and malignant phenotype in cancer cells. J Biol Chem 283:22700-8
Zhao, Guixiang; Jeoung, Nam Ho; Burgess, Shawn C et al. (2008) Overexpression of pyruvate dehydrogenase kinase 4 in heart perturbs metabolism and exacerbates calcineurin-induced cardiomyopathy. Am J Physiol Heart Circ Physiol 294:H936-43
Burgess, Shawn C; Iizuka, Katsumi; Jeoung, Nam Ho et al. (2008) Carbohydrate-response element-binding protein deletion alters substrate utilization producing an energy-deficient liver. J Biol Chem 283:1670-8

Showing the most recent 10 out of 47 publications