Nucleolin inhibits Hdm2 by multiple pathways leading to p53 stabilization

被引:66
|
作者
Saxena, A.
Rorie, C. J.
Dimitrov, D.
Daniely, Y.
Borowiec, J. A.
机构
[1] NYU, Sch Med, Dept Biochem, New York, NY 10016 USA
[2] NYU, Sch Med, Inst Canc, New York, NY 10016 USA
关键词
ARF; Mdm2; nucleolin; p53; ubiquitination;
D O I
10.1038/sj.onc.1209714
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nucleolin is a c-Myc-induced gene product with defined roles in ribosomal RNA processing and the inhibition of chromosomal DNA replication following stress. Here we find that changes in nucleolin protein levels in unstressed cells cause parallel changes in the amount of p53 protein. Alterations in p53 levels arise from nucleolin binding to the p53 antagonist Hdm2, resulting in the inhibition of both p53 ubiquitination and Hdm2 auto-ubiquitination. Nucleolin does not alter p53 ubiquitination by human papillomavirus E6, indicating that the effect is specific for Hdm2. Although the inhibition of ligase activity would be expected to stabilize Hdm2, we instead find that nucleolin also reduces Hdm2 protein levels, demonstrating that nucleolin inhibits Hdm2 using multiple mechanisms. Increases in nucleolin levels in unstressed cells led to higher expression of p21(cip1/waf1), a reduced rate of cellular proliferation, and an increase in apoptosis. Thus, nucleolin has a number of properties in common with the tumor suppressor ARF (alternate reading frame). We propose that nucleolin, like ARF, responds to hyperproliferative signals by upregulation of p53 through Hdm2 inhibition.
引用
收藏
页码:7274 / 7288
页数:15
相关论文
共 50 条
  • [21] Thermodynamics of p53 binding to hdm2(1-126): Effects of phosphorylation and p53 peptide length
    Lai, ZH
    Auger, KR
    Manubay, CM
    Copeland, RA
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2000, 381 (02) : 278 - 284
  • [22] Terphenyl-based helical mimetics that disrupt the p53/HDM2 interaction
    Yin, H
    Lee, GI
    Park, HS
    Payne, GA
    Rodriguez, JM
    Sebti, SM
    Hamilton, AD
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (18) : 2704 - 2707
  • [23] Inhibition of HDM2 and activation of p53 by ribosomal protein L23
    Jin, A
    Itahana, K
    O'Keefe, K
    Zhang, Y
    MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (17) : 7669 - 7680
  • [24] p53 promotes its own polyubiquitination by enhancing the HDM2 and HDMX interaction
    Medina-Medina, Ixaura
    Martinez-Sanchez, Mayra
    Hernandez-Monge, Jesus
    Fahraeus, Robin
    Muller, Petr
    Olivares-Illana, Vanesa
    PROTEIN SCIENCE, 2018, 27 (05) : 976 - 986
  • [25] Targeting p53, hdm2, and CD19: vaccination and immunologic strategies
    Voss, RH
    Lotz, C
    Cellary, A
    Theobald, M
    BONE MARROW TRANSPLANTATION, 2000, 25 (Suppl 2) : S43 - S45
  • [26] Effect of linker on the binding free energy of stapled p53/HDM2 complex
    Im, Haeri
    Ham, Sihyun
    PLOS ONE, 2020, 15 (04):
  • [27] Targeting p53, hdm2, and CD19: vaccination and immunologic strategies
    R-H Voss
    C Lotz
    A Cellary
    M Theobald
    Bone Marrow Transplantation, 2000, 25 : S43 - S45
  • [28] Discovery and cocrystal structure of benzodiazepinedione HDM2 antagonists that activate p53 in cells
    Grasberger, BL
    Lu, TB
    Schubert, C
    Parks, DJ
    Carver, TE
    Koblish, HK
    Cummings, MD
    LaFrance, LV
    Milkiewicz, KL
    Calvo, RR
    Maguire, D
    Lattanze, J
    Franks, CF
    Zhao, SY
    Ramachandren, K
    Bylebyl, GR
    Zhang, M
    Manthey, CL
    Petrella, EC
    Pantoliano, MW
    Deckman, IC
    Spurlino, JC
    Maroney, AC
    Tomczuk, BE
    Molloy, CJ
    Bone, RF
    JOURNAL OF MEDICINAL CHEMISTRY, 2005, 48 (04) : 909 - 912
  • [29] ROS and p53 in Regulation of UVB-induced HDM2 Alternative Splicing
    Tong, Lingying
    Wu, Shiyong
    PHOTOCHEMISTRY AND PHOTOBIOLOGY, 2015, 91 (01) : 221 - 224
  • [30] RNAi knockdown of HdmX or Hdm2 leads to new insights into p53 signaling
    Berberich, Steven J.
    CELL CYCLE, 2010, 9 (18) : 3640 - 3641