Translational control of terminal oligopyrimidine mRNAs requires a specific regulator
Author:
Publisher
Wiley
Subject
Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1016/S0014-5793(97)01209-X/fullpdf
Reference25 articles.
1. Structure and expression of ribosomal protein genes inXenopus laevis
2. Sequences mediating the translation of mouse S16 ribosomal protein mRNA during myoblast differentiation and in vitro and possible control points for the in vitro translation.
3. Oligopyrimidine tract at the 5' end of mammalian ribosomal protein mRNAs is required for their translational control.
4. The 5' untranslated region of mRNA for ribosomal protein S19 is involved in its translational regulation during Xenopus development.
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1. Evolution of TOR and Translation Control;Evolution of the Protein Synthesis Machinery and Its Regulation;2016
2. Ribosomal stress activates eEF2K–eEF2 pathway causing translation elongation inhibition and recruitment of Terminal Oligopyrimidine (TOP) mRNAs on polysomes;Nucleic Acids Research;2014-10-20
3. Translational Regulation of Terminal Oligopyrimidine mRNAs Induced by Serum and Amino Acids Involves Distinct Signaling Events;Journal of Biological Chemistry;2004-04
4. Selective Translation of Eukaryotic mRNAs: Functional Molecular Analysis of GRSF-1, a Positive Regulator of Influenza Virus Protein Synthesis;Journal of Virology;2002-10-15
5. Binding of the La autoantigen to the 5′ untranslated region of a chimeric human translation elongation factor 1A reporter mRNA inhibits translation in vitro;Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression;2001-10
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