Comprehensive examination of RNA structure and function can yield insights Impossible to giean from analysis of individual molecules. To aid understanding of the large and rapidly growing corpus of RNA structural data, we propose to create a structural classification of RNA (scaR). This database will organize features at four levels of complexity: three-dimensional motifs, tertiary interactions, structural domains, and whole molecules. Each of these may have multiple means of organization; for example, both by loop size and by base stacking. To initially define significant recurrent features, the classification will begin with manual inspection of all RNA structures. As the project progresses, observed characteristics will be formalized into algorithms that will be applied to perform rapid, reproducible, and accurate analysis and classification of RNA structures. The structural features will be mapped into a functional classification, and the associations between the two will be used to study general relationships between aspects of RNA structure and their function. To explore the evolutionary basis of RNA structure and the dependence of structure upon sequence, detailed links will be forged between classified RNAs of known structure and their evolutionarily related families. This classification will immediately elucidate the prevalence and variability of features in RNA structure. In addition, it is expected to have applications in RNA molecular modeling, molecular design and engineering, and RNA ligand and drug design. It will greatly enhance our understanding of RNA structure-function relations, the correlation between RNA structure and physical and biological properties, and evolutionary effects on RNA structure. The database will also provide a convenient and logical means for experts and neophytes alike to access and interpret the growing wealth of RNA sequence and structural data.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
1R01GM066199-01
Application #
6535330
Study Section
Molecular and Cellular Biophysics Study Section (BBCA)
Program Officer
Lewis, Catherine D
Project Start
2002-08-01
Project End
2006-07-31
Budget Start
2002-08-01
Budget End
2003-07-31
Support Year
1
Fiscal Year
2002
Total Cost
$266,372
Indirect Cost
Name
Lawrence Berkeley National Laboratory
Department
Other Basic Sciences
Type
Organized Research Units
DUNS #
078576738
City
Berkeley
State
CA
Country
United States
Zip Code
94720
Couch, Gregory S; Hendrix, Donna K; Ferrin, Thomas E (2006) Nucleic acid visualization with UCSF Chimera. Nucleic Acids Res 34:e29
Stefan, Liliana R; Zhang, Rui; Levitan, Aaron G et al. (2006) MeRNA: a database of metal ion binding sites in RNA structures. Nucleic Acids Res 34:D131-4
Hendrix, Donna K; Brenner, Steven E; Holbrook, Stephen R (2005) RNA structural motifs: building blocks of a modular biomolecule. Q Rev Biophys 38:221-43
Holbrook, Stephen R (2005) RNA structure: the long and the short of it. Curr Opin Struct Biol 15:302-8
Tamura, Makio; Hendrix, Donna K; Klosterman, Peter S et al. (2004) SCOR: Structural Classification of RNA, version 2.0. Nucleic Acids Res 32:D182-4
Klosterman, Peter S; Hendrix, Donna K; Tamura, Makio et al. (2004) Three-dimensional motifs from the SCOR, structural classification of RNA database: extruded strands, base triples, tetraloops and U-turns. Nucleic Acids Res 32:2342-52