Gene Expression Profile of Human Colon Cancer Cells Treated with Cross-Reacting Material 197, a Diphtheria Toxin Non-Toxic Mutant

Author:

Rivetti S.12,Lauriola M.12,Voltattorni M.3,Bianchini M.4,Martini D.5,Ceccarelli C.6,Palmieri A.7,Mattei G.12,Franchi M.5,Ugolini G.8,Rosati G.8,Montroni I.8,Taffurelli M.8,Solmi R.12

Affiliation:

1. Dipartimento di Istologia, Embriologia e Biologia Applicata, Università di Bologna, Bologna

2. Centro di Ricerca in Genetica Molecolare “Fondazione CARISBO”, Bologna

3. Laboratori di Biotecnologie, Università di Bologna, Bologna

4. Centro de Investigaciones Oncologicas (CIO-FUCA), Buenos Aires, Argentina

5. Dipartimento di Scienze Anatomiche Umane e Fisiopatologia dell 'Apparato Locomotore Università di Bologna, Bologna

6. Dipartimento Clinico di Scienze Radiologiche e Istocitopatologiche, Università di Bologna, Bologna

7. D.M.C.C.C. Sezione di Chirurgia Maxillo-Facciale, Università di Ferrara, Ferrara

8. Dipartimento Emergenza/Urgenza, Chirurgia Generate e dei Trapianti, Università di Bologna, Bologna, Italy

Abstract

Cross-Reacting Material 197 (CRM197) is a diphtheria toxin non-toxic mutant that has shown antitumor activity in mice and humans. It is still unclear whether this anti-tumorigenic effect depends on its strong inflammatory-immunological property, its ability to inhibit heparin-binding epidermal growth factor (HB-EGF), or even its possible weak toxicity. CRM197 is utilized as a specific inhibitor of HB-EGF that competes for the epidermal growth factor receptor (EGFR), overexpressed in colorectal cancer and implicated in its progression. In this study we evaluate the effects of CRM197 on HT-29 human colon cancer cell line behaviour and, for CRM197 recognized ability to inhibit HB-EGF, its possible influence on EGFR activation. In particular, while HT-29 does not show any reduction of viability after CRM197 treatment (MTT modified assay), or changes in cell cycle distribution (flow cytometry), in EGFR localization, phospho-EGFR detected signals (immunohistochemistry) or in morphology (scanning electron microscopy, SEM) they show a change in the gene expression profile by microarray analysis (cDNA microarray SS-H19k8). The overexpression of genes like protein phosphatase 2, catalytic subunit, alpha isozyme (PPP2CA), guanine nucleotide-binding protein G subunit alpha-1(GNAIl) and butyrophilin, subfamily 2, member A1 (BTN2A1) has been confirmed with real-time-qPCR. This is the first study where the CRM197 treatment on HT-29 shows a possible scarce implication of endogenous HB-EGF on EGFR expression and cancer cell development. At the same time, our results show the alteration of a specific and selected number of genes.

Publisher

SAGE Publications

Subject

Pharmacology,Immunology,Immunology and Allergy

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