Title
The SLiMDisc server: short, linear motif discovery in proteins.
Abstract
Short, linear motifs (SLiMs) play a critical role in many biological processes, particularly in protein-protein interactions. Overrepresentation of convergent occurrences of motifs in proteins with a common attribute (such as similar subcellular location or a shared interaction partner) provides a feasible means to discover novel occurrences computationally. The SLiMDisc (Short, Linear Motif Discovery) web server corrects for common ancestry in describing shared motifs, concentrating on the convergently evolved motifs. The server returns a listing of the most interesting motifs found within unmasked regions, ranked according to an information content-based scoring scheme. It allows interactive input masking, according to various criteria. Scoring allows for evolutionary relationships in the data sets through treatment of BLAST local alignments. Alongside this ranked list, visualizations of the results improve understanding of the context of suggested motifs, helping to identify true motifs of interest. These visualizations include alignments of motif occurrences, alignments of motifs and their homologues and a visual schematic of the top-ranked motifs. Additional options for filtering and/or re-ranking motifs further permit the user to focus on motifs with desired attributes. Returned motifs can also be compared with known SLiMs from the literature. SLiMDisc is available at: http://bioware.ucd.ie/similar to slimdisc/.
Year
DOI
Venue
2007
10.1093/nar/gkm400
NUCLEIC ACIDS RESEARCH
Keywords
Field
DocType
amino acid sequence,internet,protein protein interaction,nucleic,computational biology,proteins,computer simulation,biological process,local alignment
Short linear motif,Biology,Ranking,Amino Acid Motifs,Motif (music),Bioinformatics,Computational biology,Basic Local Alignment Search Tool,Genetics,Web server
Journal
Volume
Issue
ISSN
35
SUPnan
0305-1048
Citations 
PageRank 
References 
13
1.06
7
Authors
3
Name
Order
Citations
PageRank
Norman E. Davey122816.61
Richard J. Edwards21379.93
Denis C. Shields315820.92