A novel CDH1 germline missense mutation in a sporadic gastric cancer patient in north-east of Italy |
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Authors: | Marica Garziera Valli De Re Silvano Geremia Raquel Seruca Joana Figueiredo Soraia Melo Joana Simões-Correia Laura Caggiari Mariangela De Zorzi Vincenzo Canzonieri Renato Cannizzaro Giuseppe Toffoli |
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Affiliation: | 1. Experimental and Clinical Pharmacology Unit, Department of Molecular Oncology and Translational Medicine, DOMERT, IRCCS, National Cancer Institute, Centro di Riferimento Oncologico, Via F. Gallini, 2, 33081, Aviano, PN, Italy 2. Department of Chemical and Pharmaceutical Sciences, Centre of Excellence in Biocrystallography (CEB), University of Trieste, Trieste, Italy 3. Institute of Molecular Pathology and Immunology of the University of Porto (IPATIMUP), Porto, Portugal 4. Faculty of Medicine, University of Porto, Porto, Portugal 5. Centre of Ophthalmology and Vision Sciences–IBILI, University of Coimbra, Coimbra, Portugal 6. Pathology Unit, National Cancer Institute, IRCCS, Aviano, Italy 7. Gastroenterology Unit, National Cancer Institute, IRCCS, Aviano, Italy
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Abstract: | It is well documented that germline mutations in the E-cadherin (CDH1) gene are linked to hereditary diffuse gastric cancer (HDGC). Despite the known molecular genetic causes, most gastric cancers are sporadic and poorly investigated for susceptibility genes. We report the finding of a novel germline missense mutation in exon 6, c. 820 G > A (p.G274S) in one sporadic gastric cancer patient. This new variant does not affect cryptic splicing of CDH1 as demonstrated by molecular assay. Immunohistochemical analysis shows a mixed pattern of E-cadherin staining (membranous and cytoplasmic) in the intestinal component, while in the diffuse counterpart, the membranous staining was prevalent and a reduced membranous expression of ß-catenin was observed. In vitro assays suggest that the mutant G274S does not affect the E-cadherin protein function, its expression pattern or subcellular localization. This new variant is present in EC2 extracellular domain of the protein (p.G120S in mature protein). The molecular modelling shows that this point mutation is not dramatic for local structure. However, p.S120 is located on the surface of the protein close to the functional calcium sites and in the region of interaction with EC1 domain of another E-cadherin molecule involved in the formation of the intercellular junction. Moreover, p.S120 residue could be involved in posttranslational modifications, such as phosphorylation or glycosylation, with possible effects on stability and integrity of adhesive properties of E-cadherin. In conclusion, the pathogenicity of this mutation is unlikely; probably we found a new germline CDH1 missense mutation with potential impact, however, of uncertain significance. |
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