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Nucleic Acids Research|March 7, 2013
Active regulator of SIRT1 is required for ribosome biogenesis and functionJohn R P Knight, Anne E Willis, Jo MilnerOncogene|February 1, 2002
The interaction of p53 with the nuclear matrix is mediated by F-actin and modulated by DNA damageAndrei L Okorokov, Carlos P Rubbi, Su Metcalfe, et al.Cell Cycle (Georgetown, Tex.)|October 8, 2008
JNK2-dependent regulation of SIRT1 protein stabilityJack Ford, Shafiq Ahmed, Simon Allison, et al.Nucleic Acids Research|October 11, 2005
A bi-functional siRNA construct induces RNA interference and also primes PCR amplification for its own quantificationMing Jiang, Andrey A Arzumanov, Michael J Gait, et al.The FEBS Journal|March 30, 2005
Role of phosphorylation in p53 acetylation and PAb421 epitope recognition in baculoviral and mammalian expressed proteinsLorna J Warnock, Sally A Raines, Trevor R Mee, et al.Breast Cancer Research : BCR|November 1, 2000
P53 autoantibodies in 1006 patients followed up for breast cancerS Metcalfe, T K Wheeler, S Picken, et al.Oncogene|August 8, 2002
Several regions of p53 are involved in repression of RNA polymerase III transcriptionTorsten Stein, Diane Crighton, Lorna J Warnock, et al.Cancer Biology & Therapy|September 5, 2008
Influence of tetramerisation on site-specific post-translational modifications of p53: comparison of human and murine p53 tumor suppressor proteinLorna J Warnock, Andrew Knox, Trevor R Mee, et al.Molecular and Cellular Biology|November 30, 2011
A deacetylase-deficient SIRT1 variant opposes full-length SIRT1 in regulating tumor suppressor p53 and governs expression of cancer-related genesZahid H Shah, Shafiq U Ahmed, Jack R Ford, et al.The EMBO Journal|October 21, 2006
The structure of p53 tumour suppressor protein reveals the basis for its functional plasticityAndrei L Okorokov, Michael B Sherman, Celia Plisson, et al.Pageof 4