Evolution of Translation Regulation in budding Yeast
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Comparison of translation efficiency in S. cerevisiae, S. paradoxus, and their F1 hybrid.
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Additional file 8: of Post-translational buffering leads to convergent protein expression levels between primates
Inter-species divergence in translation efficiency. A .csv file listing results from testing for differences in translation efficiency between species for genes that are quantifiable in all three spec
NIAID Data Ecosystem30
Comparing transcript abundance and translation efficiency in S. cerevisiae, S. paradoxus, and an F1 hybrid strain. Saccharomyces
The goals of this study are to compare evolutionary differences in mRNA abundance and translation efficiency in yeast. Ribosome profiling in S. cerevisiae, S. paradoxus, and an F1 hybrid strain
NIAID Data Ecosystem10
ribo-seq in control and U1 AMO treated HeLa cells
Control and U1 AMO were transfected into Hela cells, Ribosome-associated RNAs were purified and sequenced in Novaseq platform.To compare the translation efficiency, mRNA-seq were performed in parallel
NIAID Data Ecosystem10
Additional file 8: of Post-translational buffering leads to convergent protein expression levels between primates
Inter-species divergence in translation efficiency. A .csv file listing results from testing for differences in translation efficiency between species for genes that are quantifiable in all three spec
Figshare2018-06-28 更新10
Comparison of non-AUG translation efficiency in cap-dependent and cap-independent translations.
aCap-dependent translation efficiencies of non-AUG condons were determined in COS-1 cells in transient transfections [35].
Figshare2015-12-02 更新10



