Nucleic Acids Research · 2001 · 36 citations · 28 references
GeneticsMolecular BiologyXenopus LiverTranscriptional RegulationProtein ExpressionLatent FormPolysomal Ribonuclease 1ProteomicsHormonal ReceptorRna Structure PredictionEndocrinologyKda Pmr1Mrna DecayGene ExpressionProtein BiosynthesisChromatinNatural SciencesPolysome-bound Pmr1MedicineNon-coding Rna
Estrogen induces a global change in the translation profile of Xenopus hepatocytes, replacing serum protein synthesis with production of the yolk protein precursor vitellogenin. This is accomplished by the coordinate destabilization of serum protein mRNAs and the transcriptional induction and subsequent stabilization of vitellogenin mRNA. Previous work identified an endonuclease activity whose appearance on polysomes correlated with the disappearance of serum protein mRNAs. This enzyme, polysomal ribonuclease 1 (PMR1), is a novel member of the peroxidase gene family. The current study examined the association of PMR1 with its mRNA targets on polysomes and mRNPs. The highest amount of polysome-bound PMR1 was observed prior to estrogen induction of mRNA decay. Its distribution on sucrose density gradients matched the absorbance profile of polysome-bound mRNA, suggesting that PMR1 forms a latent complex with mRNA. Following dissociation with EDTA the 62 kDa PMR1 sedimented with a larger complex of >670 kDa. Estrogen induces a 22-fold increase in unit enzymatic activity of polysome-bound PMR1, and a time-dependent loss of PMR1 from polysomes in a manner that mirrors the disappearance of albumin mRNA. These data suggest that the key step in the extensive estrogen-induced change in mRNA decay in Xenopus liver is activation of a latent mRNA endonuclease associated with its target mRNA.
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Regulation of 4E-BP1 phosphorylation: a novel two-step mechanism
Anne‐Claude Gingras, Steven P. Gygi, Brian Raught et al. · Genes & Development · 1999 · 1.3K citations · Full text
Protein Function, Signal Transduction, Signaling Pathway +15
Circularization of mRNA by Eukaryotic Translation Initiation Factors
Sandra E. Wells, P. E. Hillner, Ronald D. Vale et al. · Molecular Cell · 1998 · 966 citations · Full text
Yeast Sm-like proteins function in mRNA decapping and decay
Sundaresan Tharun, Weihai He, Andrew E. Mayes et al. · Nature · 2000 · 435 citations · Full text
Translation initiation factor eIF4G mediates <i>in vitro</i> poly(A) tail-dependent translation
Salvador Z. Tarun, Sandra E. Wells, Julie A. Deardorff et al. · Proceedings of the National Academy of Sciences · 1997 · 315 citations · Full text
Molecular Regulation, Molecular Biology, Yeast Eif4g Homologs +16