Ribosome biogenesis surveillance: probing the ribosomal protein-Mdm2-p53 pathway
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cancer Research,Genetics,Molecular Biology
Link
http://www.nature.com/articles/onc2010189.pdf
Reference77 articles.
1. Amsterdam A, Sadler KC, Lai K, Farrington S, Bronson RT, Lees JA et al (2004). Many ribosomal protein genes are cancer genes in zebrafish. PLoS Biol 2: E139.
2. Anderson SJ, Lauritsen JP, Hartman MG, Foushee AM, Lefebvre JM, Shinton SA et al. (2007). Ablation of ribosomal protein L22 selectively impairs alphabeta T cell development by activation of a p53-dependent checkpoint. Immunity 26: 759–772.
3. Ayrault O, Andrique L, Fauvin D, Eymin B, Gazzeri S, Seite P . (2006). Human tumor suppressor p14ARF negatively regulates rRNA transcription and inhibits UBF1 transcription factor phosphorylation. Oncogene 25: 7577–7586.
4. Azuma M, Toyama R, Laver E, Dawid IB . (2006). Perturbation of rRNA synthesis in the bap28 mutation leads to apoptosis mediated by p53 in the zebrafish central nervous system. J Biol Chem 281: 13309–13316.
5. Barkic M, Crnomarkovic S, Grabusic K, Bogetic I, Panic L, Tamarut S et al. (2009). The p53 tumor suppressor causes congenital malformations in Rpl24-deficient mice and promotes their survival. Mol Cell Biol 29: 2489–2504.
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