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PMID: 10684945 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S.

Analysis of the yeast transcriptome with structural and functional categories: characterizing highly expressed proteins.

Nucleic acids research ·Vol. 28 ·No. 6 ·2000-03-15 ·Pages 1481-8

Jansen R, Gerstein M

Abstract

We analyzed 10 genome expression data sets by large-scale cross-referencing against broad structural and functional categories. The data sets, generated by different techniques (e.g. SAGE and gene chips), provide various representations of the yeast transcriptome (the set of all yeast genes, weighted by transcript abundance). Our analysis enabled us to determine features more prevalent in the transcriptome than the genome: i.e. those that are common to highly expressed proteins. Starting with simplest categories, we find that, relative to the genome, the transcriptome is enriched in Ala and Gly and depleted in Asn and very long proteins. We find, furthermore, that protein length and maximum expression level have a roughly inverse relationship. To relate expression level and protein structure, we assigned transmembrane helices and known folds (using PSI-blast) to each protein in the genome; this allowed us to determine that the transcriptome is enriched in mixed alpha-beta structures and depleted in membrane proteins relative to the genome. In particular, some enzymatic folds, such as the TIM barrel and the G3P dehydrogenase fold, are much more prevalent in the transcriptome than the genome, whereas others, such as the protein-kinase and leucine-zipper folds, are depleted. The TIM barrel, in fact, is overwhelmingly the 'top fold' in the transcriptome, while it only ranks fifth in the genome. The most highly enriched functional categories in the transcriptome (based on the MIPS system) are energy production and protein synthesis, while categories such as transcription, transport and signaling are depleted. Furthermore, for a given functional category, transcriptome enrichment varies quite substantially between the different expression data sets, with a variation an order of magnitude larger than for the other categories cross-referenced (e.g. amino acids). One can readily see how the enrichment and depletion of the various functional categories relates directly to that of particular folds.

MeSH Terms
Amino Acids/analysis Databases, Factual Fungal Proteins/chemistry,classification,genetics,metabolism Gene Dosage Gene Expression Gene Expression Profiling Genes, Fungal/genetics Genome, Fungal Internet Membrane Proteins/chemistry,classification,genetics,metabolism Molecular Weight Open Reading Frames/genetics Protein Conformation Protein Folding Proteome RNA, Fungal/genetics,metabolism RNA, Messenger/genetics,metabolism Transcription, Genetic/genetics Yeasts/chemistry,enzymology,genetics,metabolism
Chemicals
Amino Acids Fungal Proteins Membrane Proteins Proteome RNA, Fungal RNA, Messenger
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Jansen R
Department of Molecular Biophysics and Biochemistry, 266 Whitney Avenue, Yale University, PO Box 208114, New Haven, CT 06520, USA.
Gerstein M
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Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
1362-4962
Published
2000-03-15
Pages
1481-8
Language
English
Region
England
NLM ID
0411011
PMCID
PMC111042
Subset
IM
Grants
NIGMS NIH HHS · P01 GM054160 · United States
NIGMS NIH HHS · 2P01GM54160-04 · United States
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