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Structural genomics of eukaryotic model organisms


EMSL Project ID
3992

Abstract

ABSTRACT
The Northeast Structural Genomics Consortium is a NIH-funded pilot
project aimed at evaluating the feasibility, costs, economies of scale, and
value of structural proteomics. The primary goal of our pilot project is to
develop integrated technologies for high-throughput (htp) protein production
and 3D structure determination. Our NESG Consortium has the particular focus
of evaluating the role of protein NMR spectroscopy in future Structural
Proteomics Centers to be funded by NIH. Our targets include members of large
protein families for which no 3D structural information is available. We
prioritize protein families with representatives in human and higher
eukaryotic genomes because of the important role of these proteins in human
health and model organism biology. NMR data collection at Pacific Northwest
National Laboratories,
in collaboration with Dr. Micheal Kennedy and Dr. John Cort, and the
structures resulting from these data are critical to the
efficacy of this project.

Project Details

Project type
Capability Research
Start Date
2003-10-01
End Date
2004-09-30
Status
Closed

Team

Principal Investigator

Gaetano Montelione
Institution
Rutgers University

Team Members

James Aramini
Institution
Rutgers University

Related Publications

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Alidoust N, M Toroker, JA Keith, and EA Carter. 2013. "Significant reduction in NiO band gap upon formation of LixNi1?xO alloys: Applications to solar energy conversion." ChemSusChem 7(1):195-201. doi:10.1002/cssc.201300595
Cort JR, TA Ramelot, D Murray, T Acton, LC Ma, R Xiao, G Montelione, and MA Kennedy. 2008. "Structure of an Acetyl-CoA Binding Protein from Staphylococcus aureus Representing a Novel Subfamily of GCN5-related N-Acetyltransferase-like Proteins." Journal of Structural and Functional Genomics 9(1-4):7-20. doi:10.1007/s10969-008-9041-z
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PNNL Technical Report PNNL-20368
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Toroker M, and EA Carter. 2012. "Transition Metal Oxide Alloys as Potential Solar Energy Conversion Materials." Journal of Materials Chemistry A 1(7):2474–2484. doi:10.1039/C2TA00816E
Toroker M, and EA Carter. 2015. "Strategies to Suppress Cation Vacancies in Metal Oxide Alloys: Consequences for Solar Energy Conversion." Journal of Materials Science 50(17):5715-5722 . doi:10.1007/s10853-015-9113-y
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