Home LiteratureArticle Details
PMID: 20137080 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Helicobacter pylori-induced activation of beta-catenin involves low density lipoprotein receptor-related protein 6 and Dishevelled.

Molecular cancer ·Vol. 9 ·2010-02-05 ·Pages 31

Gnad T, Feoktistova M, Leverkus M, Lendeckel U, Naumann M

Abstract

The human microbial pathogen Helicobacter pylori resides in the stomach of about fifty percent of the world's population and represents a risk factor for chronic gastritis, peptic ulcers and, in rare cases, gastric cancer. Alterations of the Wnt/beta-catenin signaling pathway have been described in almost every human cancer disease, due to the regulation of target genes being involved in cell cycle control, differentiation, cell migration or stem cell control. Our study aimed to elucidate the role of proximal Wnt signaling components low density lipoprotein receptor-related protein 6 (LRP6) and Dishevelled (Dvl) in the activation of beta-catenin early after infection of gastric epithelial cells with H. pylori. Infection of gastric epithelial NCI-N87 cells with H. pylori induces rapid phosphorylation of the Wnt/beta-catenin pathway co-receptor LRP6 independent of the cytotoxin-associated gene A (CagA) or vacuolating cytotoxin A (VacA). However, bacteria lacking a functional type 4 secretion system (T4SS) failed to induce LRP6 phosphorylation. Further, we identified proteins of the Dvl family, namely Dvl2 and Dvl3, which are involved in LRP6 phosphorylation. H. pylori-induced nuclear accumulation of beta-catenin and its transcriptional activation, and expression of Wnt target genes are strongly reduced in stable knockdown cell lines deficient for LRP6, Dvl2 or Dvl3. We analysed the H. pylori-induced activation of Wnt-signaling factors and demonstrate for the first time that the canonical Wnt-signaling proteins LRP6 and Dvl2 and Dvl3 are involved in the regulation of beta-catenin.

MeSH Terms
Adaptor Proteins, Signal Transducing/metabolism Bacterial Proteins/metabolism Cell Line Cell Nucleus/metabolism Dishevelled Proteins Gene Expression Regulation Gene Knockdown Techniques Helicobacter Infections/metabolism Helicobacter pylori/physiology Humans Low Density Lipoprotein Receptor-Related Protein-6 Models, Biological Phosphoproteins/metabolism Phosphorylation Receptors, LDL/metabolism TCF Transcription Factors/metabolism beta Catenin/metabolism
Chemicals
Adaptor Proteins, Signal Transducing Bacterial Proteins DVL2 protein, human DVL3 protein, human Dishevelled Proteins LRP6 protein, human Low Density Lipoprotein Receptor-Related Protein-6 Phosphoproteins Receptors, LDL TCF Transcription Factors beta Catenin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Gnad Thorsten
Institute of Experimental Internal Medicine, Otto von Guericke University, Magdeburg, Germany.
Feoktistova Maria
Leverkus Martin
Lendeckel Uwe
Naumann Michael
References (41)
41 references, click to expand
  1. Essential role of BCL9-2 in the switch between beta-catenin's adhesive and transcriptional functions.
    Genes Dev. 2004 Sep 15;18(18):2225-30 PMID: 15371335
  2. Helicobacter pylori activate epidermal growth factor receptor- and phosphatidylinositol 3-OH kinase-dependent Akt and glycogen synthase kinase 3beta phosphorylation.
    Cell Microbiol. 2009 Jan;11(1):70-82 PMID: 18782353
  3. Frequent loss of membranous E-cadherin in gastric cancers: A cross-talk with Wnt in determining the fate of beta-catenin.
    Clin Exp Metastasis. 2005;22(1):85-93 PMID: 16132582
  4. Helicobacter pylori VacA-induced inhibition of GSK3 through the PI3K/Akt signaling pathway.
    J Biol Chem. 2009 Jan 16;284(3):1612-9 PMID: 18996844
  5. Control of beta-catenin phosphorylation/degradation by a dual-kinase mechanism.
    Cell. 2002 Mar 22;108(6):837-47 PMID: 11955436
  6. Helicobacter pylori CagA phosphorylation-independent function in epithelial proliferation and inflammation.
    Cell Host Microbe. 2009 Jan 22;5(1):23-34 PMID: 19154985
  7. Wnt signaling and cancer.
    Genes Dev. 2000 Aug 1;14(15):1837-51 PMID: 10921899
  8. beta-catenin destruction complex: insights and questions from a structural perspective.
    Oncogene. 2006 Dec 4;25(57):7482-91 PMID: 17143292
  9. Helicobacter pylori suppresses glycogen synthase kinase 3beta to promote beta-catenin activity.
    J Biol Chem. 2008 Oct 24;283(43):29367-74 PMID: 18772141
  10. A mechanism for Wnt coreceptor activation.
    Mol Cell. 2004 Jan 16;13(1):149-56 PMID: 14731402
  11. Patterns of beta-catenin expression in gastric carcinoma: clinicopathological relevance and mutation analysis.
    Int J Surg Pathol. 2003 Jan;11(1):1-9 PMID: 12598910
  12. LDL-receptor-related proteins in Wnt signal transduction.
    Nature. 2000 Sep 28;407(6803):530-5 PMID: 11029007
  13. Casein kinase 1 gamma couples Wnt receptor activation to cytoplasmic signal transduction.
    Nature. 2005 Dec 8;438(7069):867-72 PMID: 16341016
  14. Helicobacter pylori CagA interacts with E-cadherin and deregulates the beta-catenin signal that promotes intestinal transdifferentiation in gastric epithelial cells.
    Oncogene. 2007 Jul 12;26(32):4617-26 PMID: 17237808
  15. R-spondin1 is a high affinity ligand for LRP6 and induces LRP6 phosphorylation and beta-catenin signaling.
    J Biol Chem. 2007 May 25;282(21):15903-11 PMID: 17400545
  16. Gastric cancer cell lines as models to study human digestive functions.
    J Cell Biochem. 2001 Mar 26;81(2):241-51 PMID: 11241664
  17. beta-Catenin mutation is a frequent cause of Wnt pathway activation in gastric cancer.
    Cancer Res. 2002 Jun 15;62(12):3503-6 PMID: 12067995
  18. arrow encodes an LDL-receptor-related protein essential for Wingless signalling.
    Nature. 2000 Sep 28;407(6803):527-30 PMID: 11029006
  19. Frequent somatic mutations of the beta-catenin gene in intestinal-type gastric cancer.
    Cancer Res. 1999 Sep 1;59(17):4257-60 PMID: 10485468
  20. Regulation of cell-cell adhesion by the cadherin-catenin complex.
    Biochem Soc Trans. 2008 Apr;36(Pt 2):149-55 PMID: 18363555
  21. Dishevelled genes mediate a conserved mammalian PCP pathway to regulate convergent extension during neurulation.
    Development. 2006 May;133(9):1767-78 PMID: 16571627
  22. Analysis of the beta-catenin/T cell factor signaling pathway in 36 gastrointestinal and liver cancer cells.
    Jpn J Cancer Res. 2002 Nov;93(11):1213-20 PMID: 12460462
  23. Helicobacter pylori CagA protein targets the c-Met receptor and enhances the motogenic response.
    J Cell Biol. 2003 Apr 28;161(2):249-55 PMID: 12719469
  24. p120 Catenin-associated Fer and Fyn tyrosine kinases regulate beta-catenin Tyr-142 phosphorylation and beta-catenin-alpha-catenin Interaction.
    Mol Cell Biol. 2003 Apr;23(7):2287-97 PMID: 12640114
  25. Interaction of CagA with Crk plays an important role in Helicobacter pylori-induced loss of gastric epithelial cell adhesion.
    J Exp Med. 2005 Nov 7;202(9):1235-47 PMID: 16275761
  26. The Wnt signaling pathway in development and disease.
    Annu Rev Cell Dev Biol. 2004;20:781-810 PMID: 15473860
  27. Deregulation of beta-catenin signal by Helicobacter pylori CagA requires the CagA-multimerization sequence.
    Int J Cancer. 2008 Feb 15;122(4):823-31 PMID: 17960618
  28. Negative feedback loop of Wnt signaling through upregulation of conductin/axin2 in colorectal and liver tumors.
    Mol Cell Biol. 2002 Feb;22(4):1184-93 PMID: 11809809
  29. CagA-independent disruption of adherence junction complexes involves E-cadherin shedding and implies multiple steps in Helicobacter pylori pathogenicity.
    Exp Cell Res. 2007 Oct 1;313(16):3459-71 PMID: 17692843
  30. Molecular characteristics of eight gastric cancer cell lines established in Japan.
    Pathol Int. 2000 Oct;50(10):767-77 PMID: 11107048
  31. Alterations of E-cadherin and beta-catenin in gastric cancer.
    BMC Cancer. 2001;1:16 PMID: 11747475
  32. Ectodomain shedding of E-cadherin and c-Met is induced by Helicobacter pylori infection.
    Exp Cell Res. 2009 Dec 10;315(20):3500-8 PMID: 19665015
  33. Identification of c-MYC as a target of the APC pathway.
    Science. 1998 Sep 4;281(5382):1509-12 PMID: 9727977
  34. Wnt induces LRP6 signalosomes and promotes dishevelled-dependent LRP6 phosphorylation.
    Science. 2007 Jun 15;316(5831):1619-22 PMID: 17569865
  35. Initiation of Wnt signaling: control of Wnt coreceptor Lrp6 phosphorylation/activation via frizzled, dishevelled and axin functions.
    Development. 2008 Jan;135(2):367-75 PMID: 18077588
  36. Constitutive transcriptional activation by a beta-catenin-Tcf complex in APC-/- colon carcinoma.
    Science. 1997 Mar 21;275(5307):1784-7 PMID: 9065401
  37. Helicobacter pylori-induced epithelial cell signalling in gastric carcinogenesis.
    Trends Microbiol. 2004 Jan;12(1):29-36 PMID: 14700549
  38. A dual-kinase mechanism for Wnt co-receptor phosphorylation and activation.
    Nature. 2005 Dec 8;438(7069):873-7 PMID: 16341017
  39. Differential mediation of the Wnt canonical pathway by mammalian Dishevelleds-1, -2, and -3.
    Cell Signal. 2008 Feb;20(2):443-52 PMID: 18093802
  40. beta-catenin regulates the expression of the matrix metalloproteinase-7 in human colorectal cancer.
    Am J Pathol. 1999 Oct;155(4):1033-8 PMID: 10514384
  41. Effects of Helicobacter pylori on the cadherin-catenin complex.
    J Clin Pathol. 2006 Dec;59(12):1261-6 PMID: 16679349
Article Info
Journal
Molecular cancer
Abbr.
Mol Cancer
ISSN
1476-4598
Published
2010-02-05
Epub
2010-00-05
Pages
31
Language
English
Region
England
NLM ID
101147698
PMCID
PMC2825249
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com