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PLoS ONEVolume 7, Issue 3, 26 March 2012, Article number e33783

E-cadherin destabilization accounts for the pathogenicity of missense mutations in hereditary diffuse gastric cancer(Article)(Open Access)

  • aIPATIMUP - Institute of Molecular Pathology and Immunology of the University of Porto, Porto, Portugal
  • bCenter of Ophthalmology and Vision Sciences, IBILI - Institute for Biomedical Research in Light and Image, Faculty of Medicine, University of Coimbra, Coimbra, Portugal
  • cMedical Faculty of the University of Porto, Porto, Portugal
  • dEMBL/CRG Systems Biology Research Unit, Centre for Genomic Regulation (CRG), UPF, Barcelona, Spain
  • eICREA, Institució Catalana de Recerca i Estudis Avançats, Barcelona, Spain

Abstract

E-cadherin is critical for the maintenance of tissue architecture due to its role in cell-cell adhesion. E-cadherin mutations are the genetic cause of Hereditary Diffuse Gastric Cancer (HDGC) and missense mutations represent a clinical burden, due to the uncertainty of their pathogenic role. In vitro and in vivo, most mutations lead to loss-of-function, although the causal factor is unknown for the majority. We hypothesized that destabilization could account for the pathogenicity of E-cadherin missense mutations in HDGC, and tested our hypothesis using in silico and in vitro tools. FoldX algorithm was used to calculate the impact of each mutation in E-cadherin native-state stability, and the analysis was complemented with evolutionary conservation, by SIFT. Interestingly, HDGC patients harbouring germline E-cadherin destabilizing mutants present a younger age at diagnosis or death, suggesting that the loss of native-state stability of E-cadherin accounts for the disease phenotype. To elucidate the biological relevance of E-cadherin destabilization in HDGC, we investigated a group of newly identified HDGC-associated mutations (E185V, S232C and L583R), of which L583R is predicted to be destabilizing. We show that this mutation is not functional in vitro, exhibits shorter half-life and is unable to mature, due to premature proteasome-dependent degradation, a phenotype reverted by stabilization with the artificial mutation L583I (structurally tolerated). Herein we report E-cadherin structural models suitable to predict the impact of the majority of cancer-associated missense mutations and we show that E-cadherin destabilization leads to loss-of-function in vitro and increased pathogenicity in vivo. © 2012 Simões-Correia et al.

Indexed keywords

EMTREE drug terms:proteasomeuvomorulincadherin
EMTREE medical terms:age distributionanimal cellarticlecarcinogenicitycomputer modelfemalegenetic conservationgenetic stabilityhalf life timehereditary diffuse gastric cancerin vitro studyin vivo studyloss of function mutationmissense mutationmutantnonhumanprotein degradationprotein structurestomach canceralgorithmamino acid sequenceanimalchemical structureCHO cellCricetulusgeneticshamsterhumanmetabolismmolecular geneticspathologystomach tumor
MeSH:AlgorithmsAmino Acid SequenceAnimalsCadherinsCHO CellsCricetinaeCricetulusHumansModels, MolecularMolecular Sequence DataMutation, MissenseStomach Neoplasms

Chemicals and CAS Registry Numbers:

proteasome, 140879-24-9; uvomorulin, 112956-45-3;

Cadherins

  • ISSN: 19326203
  • Source Type: Journal
  • Original language: English
  • DOI: 10.1371/journal.pone.0033783
  • PubMed ID: 22470475
  • Document Type: Article

  Simões-Correia, J.; IPATIMUP - Institute of Molecular Pathology and Immunology of the University of Porto, Portugal;
© Copyright 2012 Elsevier B.V., All rights reserved.

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