DocumentCode
2702234
Title
Structural characterization of RNA-binding sites of proteins: Preliminary results
Author
Towfic, Fadi ; Caragea, Cornelia ; Dobbs, Drena ; Gemperline, David C. ; Wu, Feihong ; Honavar, Vasant
Author_Institution
Iowa State Univ. Ames, Ames
fYear
2007
fDate
2-4 Nov. 2007
Firstpage
60
Lastpage
66
Abstract
We explore whether protein-RNA interfaces differ from non-interfaces in terms of their structural features and whether structural features vary according to the type of the bound RNA (e.g., mRNA, siRNA...etc), using a non-redundant dataset of 147 protein chains extracted from protein-RNA complexes in the protein data bank. Our analysis of surface roughness, solid angle and CX value of amino acid residues for each of the protein chains in the dataset shows that: The protein-RNA interface residues tend to be protruding compared to non-interface residues and tend to have higher surface roughness and exhibit moderately convex or concave solid angles. Furthermore, the protein chains in protein-RNA interfaces that contain Viral RNA and rRNA significantly differ from those that contain dsRNA, mRNA siRNA, snRNA, SRP RNA and tRNA with respect to their CX values. The results of this analysis sug gests the possibility of using such structural features to reliably identify protein-RNA interface residues when the structure of the protein is available but the structures of complexes formed by the protein with RNA are not.
Keywords
macromolecules; proteins; surface roughness; RNA-binding sites; amino acid residues; protein chains; protein-RNA interfaces; structural characterization; surface roughness; Amino acids; Bioinformatics; Biology computing; Computer interfaces; Machine learning; Protein engineering; RNA; Rough surfaces; Solids; Surface roughness;
fLanguage
English
Publisher
ieee
Conference_Titel
Bioinformatics and Biomedicine Workshops, 2007. BIBMW 2007. IEEE International Conference on
Conference_Location
Fremont, CA
Print_ISBN
978-1-4244-1604-2
Type
conf
DOI
10.1109/BIBMW.2007.4425401
Filename
4425401
Link To Document