Genome-Wide Analysis in Vivo of Translation with Nucleotide Resolution Using Ribosome Profiling

Геномный анализ ин виво трансляции с нуклеотидным разрешением с помощью профилирования рибосом
Jonathan S. Weissman, J. Robert Newman, Nicholas T. Ingolia, Sina Ghaemmaghami
2009-02-12

deep sequencinggenome-wide translationribosome profilingribosome-protected mRNA fragmentssubcodon resolution
Techniques for systematically monitoring protein translation have lagged far behind methods for measuring messenger RNA (mRNA) levels. Here, we present a ribosome-profiling strategy that is based on the deep sequencing of ribosome-protected mRNA fragments and enables genome-wide investigation of translation with subcodon resolution. We used this technique to monitor translation in budding yeast under both rich and starvation conditions. These studies defined the protein sequences being translated and found extensive translational control in both determining absolute protein abundance and responding to environmental stress. We also observed distinct phases during translation that involve a large decrease in ribosome density going from early to late peptide elongation as well as widespread regulated initiation at non-adenine-uracil-guanine (AUG) codons. Ribosome profiling is readily adaptable to other organisms, making high-precision investigation of protein translation experimentally accessible.
1
Applied to budding yeast under rich and starvation conditions, ribosome profiling defined the actual protein sequences being translated.
2
Extensive translational control was found to influence absolute protein abundance and to mediate responses to environmental stress.
3
Ribosome profiling based on deep sequencing of ribosome-protected mRNA fragments enables genome-wide investigation of translation with subcodon (nucleotide) resolution.
4
Translation shows distinct phases with a large decrease in ribosome density from early to late peptide elongation.
5
Widespread regulated initiation occurs at non-AUG codons.

Genome-wide in vivo translation in budding yeast monitored by ribosome-protected mRNA fragments (ribosome profiling)

Nucleotide-resolution features and regulation of translation including translated protein sequences, ribosome density dynamics during elongation, and widespread regulated initiation at non-AUG codons under rich and starvation conditions

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2009-02-12
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Jonathan S. Weissman
J. Robert Newman
Nicholas T. Ingolia
Sina Ghaemmaghami
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