Literature DB >> 18275817

Biochemical and structural studies of ASPP proteins reveal differential binding to p53, p63, and p73.

Ross Alexander Robinson1, Xin Lu, Edith Yvonne Jones, Christian Siebold.   

Abstract

ASPP1 and ASPP2 are activators of p53-dependent apoptosis, whereas iASPP is an inhibitor of p53. Binding assays showed differential binding for C-terminal domains of iASPP and ASPP2 to the core domains of p53 family members p53, p63, and p73. We also determined a high-resolution crystal structure for the C terminus of iASPP, comprised of four ankyrin repeats and an SH3 domain. The crystal lattice revealed an interaction between eight sequential residues in one iASPP molecule and the p53-binding site of a neighboring molecule. ITC confirmed that a peptide corresponding to the crystallographic interaction shows specific binding to iASPP. The contributions of ankyrin repeat residues, in addition to those of the SH3 domain, generate distinctive architecture at the p53-binding site suitable for inhibition by small molecules. These results suggest that the binding properties of iASPP render it a target for antitumor therapeutics and provide a peptide-based template for compound design.

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Year:  2008        PMID: 18275817     DOI: 10.1016/j.str.2007.11.012

Source DB:  PubMed          Journal:  Structure        ISSN: 0969-2126            Impact factor:   5.006


  28 in total

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Journal:  EMBO J       Date:  2012-03-20       Impact factor: 11.598

2.  Insight into the structural basis of pro- and antiapoptotic p53 modulation by ASPP proteins.

Authors:  Jinwoo Ahn; In-Ja L Byeon; Chang-Hyeock Byeon; Angela M Gronenborn
Journal:  J Biol Chem       Date:  2009-02-26       Impact factor: 5.157

Review 3.  Therapeutic prospects for p73 and p63: rising from the shadow of p53.

Authors:  Anna Vilgelm; Wael El-Rifai; Alexander Zaika
Journal:  Drug Resist Updat       Date:  2008-09-17       Impact factor: 18.500

4.  iASPP/p63 autoregulatory feedback loop is required for the homeostasis of stratified epithelia.

Authors:  Anissa Chikh; Rubeta N H Matin; Valentina Senatore; Martin Hufbauer; Danielle Lavery; Claudio Raimondi; Paola Ostano; Maurizia Mello-Grand; Chiara Ghimenti; Adiam Bahta; Sahira Khalaf; Baki Akgül; Kristin M Braun; Giovanna Chiorino; Michael P Philpott; Catherine A Harwood; Daniele Bergamaschi
Journal:  EMBO J       Date:  2011-09-06       Impact factor: 11.598

5.  In vitro effect of iASPP on cell growth of oral tongue squamous cell carcinoma.

Authors:  Yu Chen; Wangxiang Yan; Shuqi He; Jiechun Chen; Dan Chen; Zhaoqiang Zhang; Zhiguo Liu; Xueqiang Ding; Anxun Wang
Journal:  Chin J Cancer Res       Date:  2014-08       Impact factor: 5.087

6.  Flexible Tethering of ASPP Proteins Facilitates PP-1c Catalysis.

Authors:  Yeyun Zhou; Robyn Millott; Hyeong Jin Kim; Shiyun Peng; Ross A Edwards; Tamara Skene-Arnold; Michal Hammel; Susan P Lees-Miller; John A Tainer; Charles F B Holmes; J N Mark Glover
Journal:  Structure       Date:  2019-08-08       Impact factor: 5.006

Review 7.  Restoring p53 tumor suppressor activity as an anticancer therapeutic strategy.

Authors:  Jesse D Martinez
Journal:  Future Oncol       Date:  2010-12       Impact factor: 3.404

8.  p73 in Cancer.

Authors:  Alessandro Rufini; Massimiliano Agostini; Francesca Grespi; Richard Tomasini; Berna S Sayan; Maria Victoria Niklison-Chirou; Franco Conforti; Tania Velletri; Antonio Mastino; Tak W Mak; Gerry Melino; Richard A Knight
Journal:  Genes Cancer       Date:  2011-04

9.  TAp63 induces senescence and suppresses tumorigenesis in vivo.

Authors:  Xuecui Guo; William M Keyes; Cristian Papazoglu; Johannes Zuber; Wangzhi Li; Scott W Lowe; Hannes Vogel; Alea A Mills
Journal:  Nat Cell Biol       Date:  2009-11-08       Impact factor: 28.824

Review 10.  The multiple mechanisms that regulate p53 activity and cell fate.

Authors:  Antonina Hafner; Martha L Bulyk; Ashwini Jambhekar; Galit Lahav
Journal:  Nat Rev Mol Cell Biol       Date:  2019-04       Impact factor: 94.444

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