The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs

RNA-binding proteins (RBPs) exert a broad range of biological functions. To explore the scope of RBPs across eukaryotic evolution, we determined the in vivo RBP repertoire of the yeast Saccharomyces cerevisiae and identified 678 RBPs from yeast and additionally 729 RBPs from human hepatocytic HuH-7...

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Main Authors: Beckmann, B, Horos, R, Fischer, B, Castello Palomares, A, Eichelbaum, K, Alleaume, A, Schwarz, T, Curk, T, Foehr, S, Huber, W, Krijgsveld, J, Hentze, M
Format: Journal article
Published: Nature Publishing Group 2015
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author Beckmann, B
Horos, R
Fischer, B
Castello Palomares, A
Eichelbaum, K
Alleaume, A
Schwarz, T
Curk, T
Foehr, S
Huber, W
Krijgsveld, J
Hentze, M
author_facet Beckmann, B
Horos, R
Fischer, B
Castello Palomares, A
Eichelbaum, K
Alleaume, A
Schwarz, T
Curk, T
Foehr, S
Huber, W
Krijgsveld, J
Hentze, M
author_sort Beckmann, B
collection OXFORD
description RNA-binding proteins (RBPs) exert a broad range of biological functions. To explore the scope of RBPs across eukaryotic evolution, we determined the in vivo RBP repertoire of the yeast Saccharomyces cerevisiae and identified 678 RBPs from yeast and additionally 729 RBPs from human hepatocytic HuH-7 cells. Combined analyses of these and recently published data sets define the core RBP repertoire conserved from yeast to man. Conserved RBPs harbour defined repetitive motifs within disordered regions, which display striking evolutionary expansion. Only 60% of yeast and 73% of the human RBPs have functions assigned to RNA biology or structural motifs known to convey RNA binding, and many intensively studied proteins surprisingly emerge as RBPs (termed ‘enigmRBPs’), including almost all glycolytic enzymes, pointing to emerging connections between gene regulation and metabolism. Analyses of the mitochondrial hydroxysteroid dehydrogenase (HSD17B10) uncover the RNA-binding specificity of an enigmRBP.
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spelling oxford-uuid:571c76d4-e312-40c3-8432-95b15725ae0a2022-03-26T16:54:39ZThe RNA-binding proteomes from yeast to man harbour conserved enigmRBPsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:571c76d4-e312-40c3-8432-95b15725ae0aSymplectic Elements at OxfordNature Publishing Group2015Beckmann, BHoros, RFischer, BCastello Palomares, AEichelbaum, KAlleaume, ASchwarz, TCurk, TFoehr, SHuber, WKrijgsveld, JHentze, MRNA-binding proteins (RBPs) exert a broad range of biological functions. To explore the scope of RBPs across eukaryotic evolution, we determined the in vivo RBP repertoire of the yeast Saccharomyces cerevisiae and identified 678 RBPs from yeast and additionally 729 RBPs from human hepatocytic HuH-7 cells. Combined analyses of these and recently published data sets define the core RBP repertoire conserved from yeast to man. Conserved RBPs harbour defined repetitive motifs within disordered regions, which display striking evolutionary expansion. Only 60% of yeast and 73% of the human RBPs have functions assigned to RNA biology or structural motifs known to convey RNA binding, and many intensively studied proteins surprisingly emerge as RBPs (termed ‘enigmRBPs’), including almost all glycolytic enzymes, pointing to emerging connections between gene regulation and metabolism. Analyses of the mitochondrial hydroxysteroid dehydrogenase (HSD17B10) uncover the RNA-binding specificity of an enigmRBP.
spellingShingle Beckmann, B
Horos, R
Fischer, B
Castello Palomares, A
Eichelbaum, K
Alleaume, A
Schwarz, T
Curk, T
Foehr, S
Huber, W
Krijgsveld, J
Hentze, M
The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title_full The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title_fullStr The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title_full_unstemmed The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title_short The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
title_sort rna binding proteomes from yeast to man harbour conserved enigmrbps
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