Literature DB >> 15064722

WWOX binds the specific proline-rich ligand PPXY: identification of candidate interacting proteins.

John H Ludes-Meyers1, Hyunsuk Kil, Andrzej K Bednarek, Jeff Drake, Mark T Bedford, C Marcelo Aldaz.   

Abstract

WWOX, the gene that maps to common chromosomal fragile site FRA16D, is frequently affected by aberrations in multiple types of cancers. WWOX encodes a 46 kDa protein that contains two WW domains and a short-chain oxidoreductase (SDR) domain. We recently demonstrated that ectopic expression of WWOX inhibits xenograft tumor growth of tumorigenic breast cancer cells. Little is known of the biochemical function(s) of WWOX. The SDR domain is predicted to be involved in sex-steroid metabolism and the WW domains are likely involved in protein-protein interactions. In this report, we identify the specific proline-rich ligand for WWOX as PPXY and show that the amino-terminal WW domain is responsible for this interaction. Using the WWOX WW domains as a probe, we screened high-density protein arrays and identified five candidate-binding partners. The binding to one of these candidates, small membrane protein of the lysosome/late endosome (SIMPLE), was further analysed, and we observed that a specific PPSY motif in the SIMPLE amino-acid sequence was required to interact with the amino-terminal WW domain of WWOX. In addition, immunofluorescence staining demonstrated that endogenous WWOX and SIMPLE co-localize to perinuclear compartments of MCF-7 human breast cancer cells. These studies demonstrate that WWOX contains a Group I WW domain that binds known cellular proteins containing the specific ligand PPXY. Identification and characterization of WWOX interacting proteins will lead to an understanding of the biological functions of WWOX in normal and tumor cells.

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Year:  2004        PMID: 15064722      PMCID: PMC4143251          DOI: 10.1038/sj.onc.1207680

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  20 in total

1.  Short-chain dehydrogenase/reductase (SDR) relationships: a large family with eight clusters common to human, animal, and plant genomes.

Authors:  Yvonne Kallberg; Udo Oppermann; Hans Jörnvall; Bengt Persson
Journal:  Protein Sci       Date:  2002-03       Impact factor: 6.725

2.  Mycobacterium bovis Bacillus Calmette-Guerin and its cell wall complex induce a novel lysosomal membrane protein, SIMPLE, that bridges the missing link between lipopolysaccharide and p53-inducible gene, LITAF(PIG7), and estrogen-inducible gene, EET-1.

Authors:  Y Moriwaki; N A Begum; M Kobayashi; M Matsumoto; K Toyoshima; T Seya
Journal:  J Biol Chem       Date:  2001-03-26       Impact factor: 5.157

3.  Large-scale identification and characterization of human genes that activate NF-kappaB and MAPK signaling pathways.

Authors:  Akio Matsuda; Yutaka Suzuki; Goichi Honda; Shuji Muramatsu; Osamu Matsuzaki; Yukiko Nagano; Takahiro Doi; Kunitada Shimotohno; Takeshi Harada; Eisuke Nishida; Hiroshi Hayashi; Sumio Sugano
Journal:  Oncogene       Date:  2003-05-22       Impact factor: 9.867

4.  Function of WW domains as phosphoserine- or phosphothreonine-binding modules.

Authors:  P J Lu; X Z Zhou; M Shen; K P Lu
Journal:  Science       Date:  1999-02-26       Impact factor: 47.728

5.  Characterizing Class I WW domains defines key specificity determinants and generates mutant domains with novel specificities.

Authors:  J Kasanov; G Pirozzi; A J Uveges; B K Kay
Journal:  Chem Biol       Date:  2001-03

6.  Identification of multiple proteins expressed in murine embryos as binding partners for the WW domains of the ubiquitin-protein ligase Nedd4.

Authors:  C N Jolliffe; K F Harvey; B P Haines; G Parasivam; S Kumar
Journal:  Biochem J       Date:  2000-11-01       Impact factor: 3.857

7.  WWOX, a novel WW domain-containing protein mapping to human chromosome 16q23.3-24.1, a region frequently affected in breast cancer.

Authors:  A K Bednarek; K J Laflin; R L Daniel; Q Liao; K A Hawkins; C M Aldaz
Journal:  Cancer Res       Date:  2000-04-15       Impact factor: 12.701

8.  The WW domain of Yes-associated protein binds a proline-rich ligand that differs from the consensus established for Src homology 3-binding modules.

Authors:  H I Chen; M Sudol
Journal:  Proc Natl Acad Sci U S A       Date:  1995-08-15       Impact factor: 11.205

9.  JNK1 physically interacts with WW domain-containing oxidoreductase (WOX1) and inhibits WOX1-mediated apoptosis.

Authors:  Nan-Shan Chang; Joan Doherty; Amy Ensign
Journal:  J Biol Chem       Date:  2003-01-06       Impact factor: 5.157

10.  Formin binding proteins bear WWP/WW domains that bind proline-rich peptides and functionally resemble SH3 domains.

Authors:  D C Chan; M T Bedford; P Leder
Journal:  EMBO J       Date:  1996-03-01       Impact factor: 11.598

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  58 in total

1.  A novel partner of Scalloped regulates Hippo signaling via antagonizing Scalloped-Yorkie activity.

Authors:  Tong Guo; Yi Lu; Peixue Li; Meng-Xin Yin; Dekang Lv; Wenjing Zhang; Huizhen Wang; Zhaocai Zhou; Hongbin Ji; Yun Zhao; Lei Zhang
Journal:  Cell Res       Date:  2013-09-03       Impact factor: 25.617

Review 2.  Phosphorylation/de-phosphorylation in specific sites of tumor suppressor WWOX and control of distinct biological events.

Authors:  Shenq-Shyang Huang; Nan-Shan Chang
Journal:  Exp Biol Med (Maywood)       Date:  2018-01-08

3.  WWOX protein expression in normal human tissues.

Authors:  Maria I Nunez; John Ludes-Meyers; C Marcelo Aldaz
Journal:  J Mol Histol       Date:  2006-08-29       Impact factor: 2.611

Review 4.  Structural insights into the functional versatility of WW domain-containing oxidoreductase tumor suppressor.

Authors:  Amjad Farooq
Journal:  Exp Biol Med (Maywood)       Date:  2015-02-07

5.  Cellular LITAF interacts with frog virus 3 75L protein and alters its subcellular localization.

Authors:  Heather E Eaton; Andressa Ferreira Lacerda; Guillaume Desrochers; Julie Metcalf; Annie Angers; Craig R Brunetti
Journal:  J Virol       Date:  2012-10-24       Impact factor: 5.103

6.  Characterizing WW domain interactions of tumor suppressor WWOX reveals its association with multiprotein networks.

Authors:  Mohammad Abu-Odeh; Tomer Bar-Mag; Haiming Huang; TaeHyung Kim; Zaidoun Salah; Suhaib K Abdeen; Marius Sudol; Dana Reichmann; Sachdev Sidhu; Philip M Kim; Rami I Aqeilan
Journal:  J Biol Chem       Date:  2014-02-18       Impact factor: 5.157

Review 7.  Strategies of oncogenic microbes to deal with WW domain-containing oxidoreductase.

Authors:  Yao Chang; Yu-Yan Lan; Jenn-Ren Hsiao; Nan-Shan Chang
Journal:  Exp Biol Med (Maywood)       Date:  2014-12-07

8.  Low levels of WWOX protein immunoexpression correlate with tumour grade and a less favourable outcome in patients with urinary bladder tumours.

Authors:  D Ramos; M Abba; J A López-Guerrero; J Rubio; E Solsona; S Almenar; A Llombart-Bosch; C M Aldaz
Journal:  Histopathology       Date:  2008-04-29       Impact factor: 5.087

Review 9.  WWOX at the crossroads of cancer, metabolic syndrome related traits and CNS pathologies.

Authors:  C Marcelo Aldaz; Brent W Ferguson; Martin C Abba
Journal:  Biochim Biophys Acta       Date:  2014-06-14

10.  WWOX hypomorphic mice display a higher incidence of B-cell lymphomas and develop testicular atrophy.

Authors:  John H Ludes-Meyers; Hyunsuk Kil; Maria I Nuñez; Claudio J Conti; Jan Parker-Thornburg; Mark T Bedford; C Marcelo Aldaz
Journal:  Genes Chromosomes Cancer       Date:  2007-12       Impact factor: 5.006

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