The long-term goal of the research program supported by the present grant is to understand in depth the role of intermediary metabolism of pancreatic beta-cells in fuel stimulated insulin release. Glucose and glutamine metabolism and their interconnections are the primary focus. This program is strongly influenced by relevant clinical studies of well-defined, inherited, hypo- and hyperglycemia syndromes in men, including Glucokinase Disease and GDH or SUR-1/Kir 6.2 linked hypoglycemia. We have formulated the following projects. Project 1. Continue structure/activity studies of glucokinase (GK) using spontaneous and designer mutants of the enzyme with emphasis on the unexplained MODY-2 and PNDM-GK cases, on selected newly-discovered cases of GK disease and on the molecular basis and physiological relevance of nonessential heterotopic allosteric activation of GK. Project 2. Investigate expression control of GK in beta-cells by focusing on the direct control of glucose and/or other fuel molecules and possible modifications by hormones and neurotransmitters, in particular on the possibility of an indirect autocrine role of insulin in the process. Project 3. Study the role of glutamine metabolism and its regulation by glucose in beta-cell function by focusing on the molecular mechanisms that regulate glutaminase, glutamine synthetase, glutamate dehydrogenase and transaminases, and exploring a hypothetical dual role of glutamine as fuel and as cofactor in stimulated insulin release.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK022122-28
Application #
6920788
Study Section
Metabolism Study Section (MET)
Program Officer
Blondel, Olivier
Project Start
1978-05-01
Project End
2007-06-30
Budget Start
2005-07-01
Budget End
2006-06-30
Support Year
28
Fiscal Year
2005
Total Cost
$464,475
Indirect Cost
Name
University of Pennsylvania
Department
Biochemistry
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Zelent, Bogumil; Raimondo, Anne; Barrett, Amy et al. (2014) Analysis of the co-operative interaction between the allosterically regulated proteins GK and GKRP using tryptophan fluorescence. Biochem J 459:551-64
Li, Changhong; Liu, Chengyang; Nissim, Itzhak et al. (2013) Regulation of glucagon secretion in normal and diabetic human islets by ?-hydroxybutyrate and glycine. J Biol Chem 288:3938-51
Zhang, Tingting; Li, Changhong (2013) Mechanisms of amino acid-stimulated insulin secretion in congenital hyperinsulinism. Acta Biochim Biophys Sin (Shanghai) 45:36-43
Prentki, Marc; Matschinsky, Franz M; Madiraju, S R Murthy (2013) Metabolic signaling in fuel-induced insulin secretion. Cell Metab 18:162-85
Doliba, Nicolai M; Qin, Wei; Najafi, Habiba et al. (2012) Glucokinase activation repairs defective bioenergetics of islets of Langerhans isolated from type 2 diabetics. Am J Physiol Endocrinol Metab 302:E87-E102
Zelent, B; Buettger, C; Grimsby, J et al. (2012) Thermal stability of glucokinase (GK) as influenced by the substrate glucose, an allosteric glucokinase activator drug (GKA) and the osmolytes glycerol and urea. Biochim Biophys Acta 1824:769-84
Nissim, Itzhak; Horyn, Oksana; Nissim, Ilana et al. (2012) Effects of a glucokinase activator on hepatic intermediary metabolism: study with 13C-isotopomer-based metabolomics. Biochem J 444:537-51
Doliba, Nicolai M; Fenner, Deborah; Zelent, Bogumil et al. (2012) Repair of diverse diabetic defects of ?-cells in man and mouse by pharmacological glucokinase activation. Diabetes Obes Metab 14 Suppl 3:109-19
Matschinsky, Franz M; Zelent, Bogumil; Doliba, Nicolai et al. (2011) Glucokinase activators for diabetes therapy: May 2010 status report. Diabetes Care 34 Suppl 2:S236-43
Fenner, Deborah; Odili, Stella; Hong, Hee-Kyung et al. (2011) Generation of N-ethyl-N-nitrosourea (ENU) diabetes models in mice demonstrates genotype-specific action of glucokinase activators. J Biol Chem 286:39560-72

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