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Functional role of the Ca-activated Cl channel DOG1/TMEM16A in gastrointestinal stromal tumor cells
Authors:Erik Berglund,Pinar Akcakaya,David Berglund,Fredrik Karlsson,Vladana Vukojević,Linkiat Lee,Darko Bogdanović,Weng-Onn Lui,Catharina Larsson,Jan Zedenius,Robin Frö  bom,Robert Brä  nströ  m
Affiliation:1. Endocrine and Sarcoma Surgery Unit, Department of Molecular Medicine and Surgery, Karolinska Institutet, Stockholm, Sweden;2. Department of Breast and Endocrine Surgery, Karolinska University Hospital, Stockholm, Sweden;3. Department of Oncology-Pathology, Karolinska Institutet, Cancer Center Karolinska, Stockholm, Sweden;4. Section for Transplantation Surgery, Department of Surgical Sciences, Uppsala University Hospital, Uppsala, Sweden;5. Department of Clinical Neuroscience, Karolinska Institutet, Stockholm, Sweden
Abstract:DOG1, a Ca2+-activated Cl channel (CaCC), was identified in 2004 to be robustly expressed in gastrointestinal stromal tumors (GIST). It was rapidly included as a tumor marker in routine diagnostics, but the functional role remained unknown. CaCCs are important regulators of normal physiological functions, but also implicated in tumorigenesis, cancer progression, metastasis, cell migration, apoptosis, proliferation and viability in several malignancies. We therefore investigated whether DOG1 plays a role in the three latter in GIST by utilizing in vitro cell model systems. Confocal microscopy identified different subcellular localizations of DOG1 in imatinib-sensitive and imatinib-resistant cells. Electrophysiological studies confirmed that DOG1-specific pharmacological agents possess potent activating and inhibiting properties. Proliferation assays showed small effects up to 72 h, and flow cytometric analysis of adherent cells with 7-AAD/Annexin V detected no pharmacological effects on viable GIST cells. However, inhibition of DOG1 conveyed pro-apoptotic effects among early apoptotic imatinib-resistant cells. In conclusion, DOG1 generates Cl currents in GIST that can be regulated pharmacologically, with small effects on cell viability and proliferation in vitro. Inhibition of DOG1 might act pro-apoptotic on some early apoptotic GIST cell populations. Further studies are warranted to fully illuminate the function of DOG1 and its potential as therapeutic target.
Keywords:GIST, Gastrointestinal stromal tumor   DOG1, Discovered on GIST-1   TKI, Tyrosine kinase inhibitor   PDGFR, Platelet-derived growth factor receptor.
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