The aggressiveness of succinate dehydrogenase subunit B-deficient chromaffin cells is reduced when their bioelectrical properties are restored by glibenclamide

Author:

Amore Francesca1,Garella Rachele2,Santi Alice1,Guasti Daniele3,Martinelli Serena145,Canu Letizia145,Bani Daniele3,Neuzil Jiri678,Maggi Mario145,Squecco Roberta2,Rapizzi Elena245ORCID

Affiliation:

1. Department Experimental and Clinical Biomedical Sciences, University of Florence, Florence, Italy

2. Department Experimental and Clinical Medicine, University of Florence, Florence, Italy

3. Department of Experimental and Clinical Medicine, Imaging Platform, University of Florence, Italy

4. Centro di Ricerca e Innovazione sulle Patologie Surrenaliche, AOU Careggi, Florence, Italy

5. ENS@T Center of Excellence, Florence, Italy

6. Institute of Biotechnology, Czech Academy of Sciences, Prague-West, Czech Republic

7. School of Pharmacy and Medical Science, Griffith University, Southport, Queensland, Australia

8. Faculty of Science and 1st Medical Faculty, Charles University, Prague, Czech Republic

Abstract

Pheochromocytomas/paragangliomas (PPGLs) are neuroendocrine tumours, mostly resulting from mutations in predisposing genes. Mutations of succinate dehydrogenase (SDH) subunit B (SDHB) are associated with high probability of metastatic disease. Since bioelectrical properties and signalling in cancer are an emerging field, we investigated the metabolic, functional and electrophysiological characteristics in human succinate dehydrogenase subunit B (SDHB)-deficient pheochromocytoma cells. These cells exhibited reduced SDH function with elevated succinate-to-fumarate ratio and reduced intracellular ATP levels. The analysis of membrane passive properties revealed a more hyperpolarized membrane potential and a lower cell capacitance of SDHB-deficient cells compared to the parental ones. These bioelectrical changes were associated with reduced proliferation and adhesion capacity of SDHB-deficient cells. Only in SDHB-deficient cells, we also observed an increased amplitude of potassium currents suggesting an activation of ATP-sensitive potassium channels (KATP). Indeed, exposure of the SDHB-deficient cells to glibenclamide, a specific KATP inhibitor, or to ATP caused normalization of potassium current features and altered proliferation and adhesion. In this work, we show for the first time that reduced intracellular ATP levels in SDHB-deficient chromaffin cells impaired cell bioelectrical properties, which, in turn, are associated with an increased cell aggressiveness. Moreover, we first ever demonstrated that glibenclamide not only reduced the outward potassium currents in SDHB-deficient cells but increased their growth capacity, reduced their ability to migrate and shifted their phenotype towards one more similar to that of parental one.

Publisher

Bioscientifica

Subject

Cancer Research,Endocrinology,Oncology,Endocrinology, Diabetes and Metabolism

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