The metabolic roles of human cytosolic and mitochondrial serine hydroxymethyltransferase (SHMT) and the factors that contribute to their gene expression and catalytic activity will be determined using molecular biology techniques. The role of the SHMT catalyzed formation of 5- formyltetrahydrofolate, and the effects of -5-formyltetrahydrofolate accumulation on cellular metabolism and homeostasis will be investigated. The following approaches will be taken: l. The human SHMT genes will be cloned, sequenced and analyzed for consensus DNA regulatory elements. Consensus or novel cis-acting sequence elements that contribute to SHMT expression will be identified using chloramphenicol acetyltransferase assays and in vivo footprint analysis. The associated trans-acting factors will be identified and characterized by gel-mobility shift assays and southwestern analysis. 2 The mechanisms through which external stimuli regulate SHMT expression will be elucidated. Cultured cells will be treated with stimuli that are known to influence SHMT activity. The effects of these stimuli on SHMT mRNA levels and synthesis rates will be determined using a reverse transcriptase-polymerase chain reaction assay and nuclear runoff assays. Changes in mRNA will be compared to SHMT enzyme activity. The effects of external stimuli on folate one-carbon pools, intracellular serine/glycine concentrations and on the 5-formyltetrahydrofolate futile cycle will also be determined by HPLC analysis. 3. The role of the 5-formyltetrahydrofolate futile cycle in mammalian cellular homeostasis will be studied. Cell culture models will be developed where the futile cycle is manipulated by methenyltetrahydrofolate synthetase inhibitors, varying intracellular serine/glycine ratios and by disrupting and/or over expressing SHMT and methenyltetrahydrofolate synthetase. The effects of 5- formyltetrahydrofolate accumulation on cellular glycine concentrations, one-carbon metabolism, global protein synthesis, and gene transcription in mammalian cells will be investigated. The long term goal of these studies is to (l) differentiate the metabolic roles of mitochondrial and cytosolic SHMT and determine if their regulation influences the supply of folate-activated one-carbon units, (2) determine how 5-formyltetrahydrofolate concentrations are regulated in mammalian cells, (3) define the role of the SHMT catalyzed formation of 5- formyltetrahydrofolate in influencing cell metabolism and proliferation.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
First Independent Research Support & Transition (FIRST) Awards (R29)
Project #
5R29DK049621-03
Application #
2458881
Study Section
Special Emphasis Panel (ZRG4-NTN (06))
Program Officer
Laughlin, Maren R
Project Start
1995-08-01
Project End
2000-07-31
Budget Start
1997-08-01
Budget End
1998-07-31
Support Year
3
Fiscal Year
1997
Total Cost
Indirect Cost
Name
Cornell University
Department
Nutrition
Type
Other Domestic Higher Education
DUNS #
City
Ithaca
State
NY
Country
United States
Zip Code
14850
Oppenheim, E W; Adelman, C; Liu, X et al. (2001) Heavy chain ferritin enhances serine hydroxymethyltransferase expression and de novo thymidine biosynthesis. J Biol Chem 276:19855-61
Liu, X; Szebenyi, D M; Anguera, M C et al. (2001) Lack of catalytic activity of a murine mRNA cytoplasmic serine hydroxymethyltransferase splice variant: evidence against alternative splicing as a regulatory mechanism. Biochemistry 40:4932-9
Liu, X; Reig, B; Nasrallah, I M et al. (2000) Human cytoplasmic serine hydroxymethyltransferase is an mRNA binding protein. Biochemistry 39:11523-31
Szebenyi, D M; Liu, X; Kriksunov, I A et al. (2000) Structure of a murine cytoplasmic serine hydroxymethyltransferase quinonoid ternary complex: evidence for asymmetric obligate dimers. Biochemistry 39:13313-23
Oppenheim, E W; Nasrallah, I M; Mastri, M G et al. (2000) Mimosine is a cell-specific antagonist of folate metabolism. J Biol Chem 275:19268-74
Girgis, S; Nasrallah, I M; Suh, J R et al. (1998) Molecular cloning, characterization and alternative splicing of the human cytoplasmic serine hydroxymethyltransferase gene. Gene 210:315-24
Girgis, S; Suh, J R; Jolivet, J et al. (1997) 5-Formyltetrahydrofolate regulates homocysteine remethylation in human neuroblastoma. J Biol Chem 272:4729-34
Stover, P J; Chen, L H; Suh, J R et al. (1997) Molecular cloning, characterization, and regulation of the human mitochondrial serine hydroxymethyltransferase gene. J Biol Chem 272:1842-8