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  1. 1.   Limitations of Peptide Retro-inverso Isomerization in Molecular Mimicry
  2. Li, C.; Pazgier, M.; Li, J.; Li, C. Q.; Liu, M.; Zou, G. Z.; Li, Z. Y.; Chen, J. D.; Tarasov, S. G.; Lu, W. Y.
  3. Journal of Biological Chemistry. 2010, Jun; 285(25): 19572-19581.
  1. 2.   Structural Basis for p300 Taz2-p53 TAD1 Binding and Modulation by Phosphorylation
  2. Feng, H. Q.; Jenkins, L.; Durell, S. R.; Hayashi, R.; Mazur, S. J.; Cherry, S.; Tropea, J. E.; Miller, M.; Wlodawer, A.; Appella, E.; Bai, Y.
  3. Structure. 2009 17(2): 202-210.
  1. 3.   Two Distinct Motifs within the p53 Transactivation Domain Bind to the Taz2 Domain of p300 and Are Differentially Affected by Phosphorylation
  2. Jenkins, L.; Yamaguchi, H.; Hayashi, R.; Cherry, S.; Tropea, J. E.; Miller, M.; Wlodawer, A.; Appella, E.; Mazur, S. J.
  3. Biochemistry. 2009 48(6): 1244-1255.
  1. 4.   Computer Simulations of Peptides from the p53 DNA Binding Domain
  2. Khalili, M.; Wales, D. J.
  3. Journal of Chemical Theory and Computation. 2009 5(5): 1380-1392.
  1. 5.   Structural basis for high-affinity peptide inhibition of p53 interactions with MDM2 and MDMX
  2. Pazgiera, M.; Liu, M.; Zou, G. Z.; Yuan, W. R.; Li, C. Q.; Li, C.; Li, J.; Monbo, J.; Zella, D.; Tarasov, S. G.; Lu, W.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2009 106(12): 4665-4670.
  1. 6.   Towards inferring time dimensionality in protein-protein interaction networks by integrating structures: the p53 example
  2. Tuncbag, N.; Kar, G.; Gursoy, A.; Keskin, O.; Nussinov, R.
  3. Molecular Biosystems. 2009 5(12): 1770-1778.
  1. 8.   A role for mixed lineage kinases in regulating transcription factor CCAAT/enhancer-binding protein-beta-dependent gene expression in response to interferon-gamma
  2. Roy, S. K.; Shuman, J. D.; Platanias, L. C.; Shapiro, P. S.; Reddy, S. P. M.; Johnson, P. F.; Kalvakolanu, D. V.
  3. Journal of Biological Chemistry. 2005, JUL 1; 280(26): 24462-24471.
  1. 9.   Coactivators and corepressors of NF-kappa B in I kappa Beta alpha gene promoter
  2. Gao, Z. G.; Chiao, P.; Zhang, X.; Zhang, X. H.; Lazar, M. A.; Seto, E.; Young, H. A.; Ye, J. P.
  3. Journal of Biological Chemistry. 2005, JUN 3; 280(22): 21091-21098.
  1. 10.   The contribution of the Trp/Met/Phe residues to physical interactions of p53 with cellular proteins
  2. Ma, B. Y.; Pan, Y. P.; Gunasekaran, K.; Keskin, O.; Venkataraghavan, R. B.; Levine, A. J.; Nussinov, R.
  3. Physical Biology. 2005, JUN; 2(2): S56-S66.
  1. 11.   Transcriptional activity of CCAAT/enhancer-binding proteins is controlled by a conserved inhibitory domain that is a target for sumoylation
  2. Kim, J.; Cantwell, C. A.; Johnson, P. F.; Pfarr, C. M.; Williams, S. C.
  3. Journal of Biological Chemistry. 2002 277(41): 38037-38044.
  1. 12.   Interleukin-2 family cytokines stimulate phosphorylation of the Pro-Ser-Pro motif of Stat5 transcription factors in human T cells: resistance to suppression of multiple serine kinase pathways
  2. Nagy, Z. S.; Wang, Y. L.; Erwin-Cohen, R. A.; Aradi, J.; Monia, B.; Wang, L. H.; Stepkowski, S. M.; Rui, H.; Kirken, R. A.
  3. Journal of Leukocyte Biology. 2002 72(4): 819-828.
  1. 13.   Binding sites for Rev and ASF/SF2 map to a 55-nucleotide purine-rich exonic element in equine infectious anemia virus RNA
  2. Chung, H. K.; Derse, D.
  3. Journal of Biological Chemistry. 2001 276(22): 18960-18967.
  1. 14.   Death-associated protein kinase 2 is a new calcium/calmodulin-dependent protein kinase that signals apoptosis through its catalytic activity
  2. Kawai, T.; Nomura, F.; Hoshino, K.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N. A.; Akira, S.
  3. Oncogene. 1999 18(23): 3471-3480.
  1. 15.   Identification of novel import and export signals of human TAP, the protein that binds to the constitutive transport element of the type D retrovirus mRNAs
  2. Bear, J.; Tan, W.; Zolotukhin, A. S.; Tabernero, C.; Hudson, E. A.; Felber, B. K.
  3. Molecular and Cellular Biology. 1999 19(9): 6306-6317.
  1. 16.   Differential Requirements For Alternative Splicing and Nuclear Export Functions of Equine Infectious Anemia Virus Rev Protein
  2. Harris, M. E.; Gontarek, R. R.; Derse, D.; Hope, T. J.
  3. Molecular and Cellular Biology. 1998 18(7): 3889-3899.
  1. 17.   Posttranscriptional Regulation By Rev Protein of Human Immunodeficiency Virus Type 1 Results in Nonrandom Nuclear Localization of Gag Mrna
  2. Romanov, V. I.; Zolotukhin, A. S.; Aleksandroff, N. N.; Dasilva, P. P.; Felber, B. K.
  3. Virology. 1997 228(2): 360-370.
  1. 19.   Reconstitution of the Nf-Kappa-B System in Saccharomyces Cerevisiae For Isolation of Effectors By Phenotype Modulation
  2. Epinat, J. C.; Whiteside, S. T.; Rice, N. R.; Israel, A.
  3. Yeast. 1997 13(7): 599-612.
  1. 20.   Analysis of the Interaction Between Human Papillomavirus Type 16 E7 and the Tata Binding Protein, Tbp
  2. Phillips, A. C.; Vousden, K. H.
  3. Journal of General Virology. 1997 78(Part 4): 905-909.
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