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A quantitative view of cellular functions requires precise measures of the rates of biomolecule production, especially proteins-the direct effectors of biological processes. Here we present a genome-wide approach, based on ribosome profiling, for measuring absolute protein synthesis rates. The resul...
ORGANISM(S): Escherichia coli 
Jovanovic M,Rooney M, Mertins P, Przybylski D, Chevrier N, Satija R, Rodriguez EH, Fields AP, Schwartz S, Raychowdhury R, Mumbach M, Eisenhaure T, Rabani M, Gennert D, Lu D, Delorey T, Weissman JS, Carr SA, Hacohen N, Regev A, submitted 2015. Protein expression is regulated by production and degrada...
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2015-01-15 | MSV000078994 | MassIVE
We present an approach (native elongating transcript sequencing, NET-seq), based on deep sequencing of 3M-bM-^@M-^Y ends of nascent transcripts associated with RNA polymerase, to monitor transcription at nucleotide resolution. Application of NET-seq in Saccharomyces cerevisiae reveals that while pro...
ORGANISM(S): Saccharomyces cerevisiae 
The ability to sequence genomes has far outstripped approaches for deciphering the information they encode. Here we present a suite of techniques, based on ribosome profiling (the deep-sequencing of ribosome-protected mRNA fragments), to provide genome-wide maps of protein synthesis as well as a p...
ORGANISM(S): Mus musculus 
Ribosomes can read through stop codons in a regulated manner, elongating rather than terminating the nascent peptide. Stop codon readthrough is essential to diverse viruses, and phylogenetically predicted to occur in a few hundred genes in Drosophila melanogaster, but the importance of regulated rea...
ORGANISM(S): Drosophila melanogaster 
Techniques for systematically monitoring protein translation have lagged far behind methods for measuring mRNA levels. Here we present a ribosome profiling strategy, based on deep sequencing of ribosome protected mRNA fragments, that enables genome-wide investigation of translation with sub-codon re...
ORGANISM(S): Saccharomyces cerevisiae 
abundance based on SD normalized data, intensity of GFP-tagged proteins, Interaction consistency score: 7.5, Coverage: 37
ORGANISM(S): 4932 
2006-00-00 | 3388877431 | PAXDB
abundance based on YEPD normalized data, intensity of GFP-tagged proteins, Interaction consistency score: 8.2, Coverage: 38
ORGANISM(S): 4932 
2006-00-00 | 1367210792 | PAXDB
Recent studies highlight the importance of translational control in determining protein abundance, underscoring the value of measuring gene expression at the level of translation. We present a protocol for genome-wide, quantitative analysis of in vivo translation by deep sequencing. This ribosome pr...
ORGANISM(S): Homo sapiens 
Meiosis is a complex developmental process that generates haploid cells from diploid progenitors. We measured mRNA abundance and protein production through yeast sporulation and found strong temporal control for most genes, achieved through both mRNA levels and translational regulation. Monitoring t...
ORGANISM(S): Saccharomyces cerevisiae 
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