We seek to characterize functional and conformational changes of the E. coli heat-shock protein GroEL at elevated temperatures. This investigation is important for understanding the function of this protein under heat-shock. The elevated expression of heat-shock proteins has been observed in cells and tissues in concert with a broad distribution of human diseases where symptoms include fever, inflammation, ischemia, oxidant injury, cardiac hypertrophy, and cell and tissue damage. Our working hypothesis is that the heat-shock protein GroEL plays an essential role in protecting other proteins against damage caused by stressful conditions, such as heat-shock. The broad long-term objective is to establish structure-function relationships of the heat shock protein GroEL under unfavorable cellular conditions.
The specific aims of this project are: 1) Characterization of the interaction between GroEL and enzymes undergoing denaturation at elevated temperatures. This will be achieved by examining mixtures of both a thermally-denatured enzyme and the GroEL protein using high-speed centrifugation and size exclusion HPLC. 2) Evaluation of the stability of complexes of GroEL and thermally- denatured enzymes. The integrity of the complexes over time will be monitored by high-speed centrifugation and size exclusion HPLC and by determining the activity of the released enzyme. 3) Analysis of the conformation of thermally-denatured enzymes bound to GroEL. This will be achieved by using fluorescence spectroscopy and limited proteolysis. 4) To detail the thermal unfolding of GroEL and the influence of its ligands on the thermal unfolding of the chaperonin. This will be achieved by using tyrosine and bis-ANS fluorescence spectroscopy, light scattering techniques and circular dichroism spectroscopy.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Minority Biomedical Research Support - MBRS (S06)
Project #
5S06GM059833-04
Application #
6666433
Study Section
Minority Programs Review Committee (MPRC)
Project Start
2002-09-01
Project End
2003-08-31
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
4
Fiscal Year
2002
Total Cost
$230,840
Indirect Cost
Name
California State University San Marcos
Department
Type
DUNS #
176262681
City
San Marcos
State
CA
Country
United States
Zip Code
92078
Melkani, Girish C; Sielaff, Robin; Zardeneta, Gustavo et al. (2012) Interaction of oxidized chaperonin GroEL with an unfolded protein at low temperatures. Biosci Rep 32:299-303
Pasquini, Sarah C; Vourlitis, George L (2010) Post-fire primary production and plant community dynamics in chaparral stands exposed to varying levels of nitrogen deposition. J Arid Environ 74:310-314
Vourlitis, George L; Pasquini, Sarah C (2009) Experimental dry-season N deposition alters species composition in southern Californian mediterranean-type shrublands. Ecology 90:2183-9
Hizer, S E; Tamulis, W G; Robertson, L M et al. (2008) Evidence of multiple retrotransposons in two litopenaeid species. Anim Genet 39:363-73
Melkani, Girish C; Sielaff, Robin L; Zardeneta, Gustavo et al. (2008) Divalent cations stabilize GroEL under conditions of oxidative stress. Biochem Biophys Res Commun 368:625-30
Trujillo, Keith A; Zamora, Juan J; Warmoth, Kathleen P (2008) Increased response to ketamine following treatment at long intervals: implications for intermittent use. Biol Psychiatry 63:178-83
Mendez, Ian A; Trujillo, Keith A (2008) NMDA receptor antagonists inhibit opiate antinociceptive tolerance and locomotor sensitization in rats. Psychopharmacology (Berl) 196:497-509
Mothe, Bianca R; Stewart, Barbara S; Oseroff, Carla et al. (2007) Chronic lymphocytic choriomeningitis virus infection actively down-regulates CD4+ T cell responses directed against a broad range of epitopes. J Immunol 179:1058-67
Trujillo, Keith A; Castaneda, Edward; Martinez, Diana et al. (2006) Biological research on drug abuse and addiction in Hispanics: current status and future directions. Drug Alcohol Depend 84 Suppl 1:S17-28
Melkani, Girish C; Zardeneta, Gustavo; Mendoza, Jose A (2005) On the chaperonin activity of GroEL at heat-shock temperature. Int J Biochem Cell Biol 37:1375-85

Showing the most recent 10 out of 22 publications