Blockade of CaV3 calcium channels and induction of G0/G1 cell cycle arrest in colon cancer cells by gossypol

Author:

Lopez‐Charcas Osbaldo1ORCID,Benouna Oumnia2,Lemoine Roxane2,Rosendo‐Pineda Margarita Jacaranda1,Anguheven‐Ledezma Tonantzin Guadalupe1ORCID,Sandoval‐Vazquez Lizeth3,Gallegos‐Gomez Martin Leonardo3,Robles‐Martinez Leticia1,Herrera‐Carrillo Zazil14,Ramírez‐Aragón Miguel1,Alfaro Ana5,Chadet Stéphanie2,Ferro Fabio2ORCID,Besson Pierre2,Jiang Lin‐Hua267,Velu Sadanandan E.89,Guerrero‐Hernandez Agustín3,Roger Sébastien2,Gomora Juan Carlos1

Affiliation:

1. Departamento de Neuropatología Molecular, División de Neurociencias, Instituto de Fisiología Celular Universidad Nacional Autónoma de México Mexico City Mexico

2. Université de Tours, Inserm U1327 ISCHEMIA ‘Membrane Signalling and Inflammation in Reperfusion Injuries’ Tours France

3. Department of Biochemistry CINVESTAV Mexico City Mexico

4. Centro de Investigación en Ciencias de la Salud (CICSA) Universidad Anáhuac Mexico City Mexico

5. Servicio de Anatomía Patológica Hospital General de México ‘Dr. Eduardo Liceaga’ Mexico City Mexico

6. Department of Physiology and Pathophysiology and Sino‐UK Joint Laboratory of Brain Function and Injury of Henan Province Xinxiang Medical University Xinxiang China

7. School of Biomedical Sciences, Faculty of Biological Sciences University of Leeds Leeds UK

8. Department of Chemistry University of Alabama at Birmingham Birmingham Alabama USA

9. O'Neal Comprehensive Cancer Center University of Alabama at Birmingham Birmingham Alabama USA

Abstract

AbstractBackground and PurposeGastrointestinal tumours overexpress voltage‐gated calcium (CaV3) channels (CaV3.1, 3.2 and 3.3). CaV3 channels regulate cell growth and apoptosis colorectal cancer. Gossypol, a polyphenolic aldehyde found in the cotton plant, has anti‐tumour properties and inhibits CaV3 currents. A systematic study was performed on gossypol blocking mechanism on CaV3 channels and its potential anticancer effects in colon cancer cells, which express CaV3 isoforms.Experimental ApproachTranscripts for CaV3 proteins were analysed in gastrointestinal cancers using public repositories and in human colorectal cancer cell lines HCT116, SW480 and SW620. The gossypol blocking mechanism on CaV3 channels was investigated by combining heterologous expression systems and patch‐clamp experiments. The anti‐tumoural properties of gossypol were estimated by cell proliferation, viability and cell cycle assays. Ca2+ dynamics were evaluated with cytosolic and endoplasmic reticulum (ER) Ca2+ indicators.Key ResultsHigh levels of CaV3 transcripts correlate with poor prognosis in gastrointestinal cancers. Gossypol blockade of CaV3 isoforms is concentration‐ and use‐dependent interacting with the closed, activated and inactivated conformations of CaV3 channels. Gossypol and CaV3 channels down‐regulation inhibit colorectal cancer cell proliferation by arresting cell cycles at the G0/G1 and G2/M phases, respectively. CaV3 channels underlie the vectorial Ca2+ uptake by endoplasmic reticulum in colorectal cancer cells.Conclusion and ImplicationsGossypol differentially blocked CaV3 channel and its anticancer activity was correlated with high levels of CaV3.1 and CaV3.2 in colorectal cancer cells. The CaV3 regulates cell proliferation and Ca2+ dynamics in colorectal cancer cells. Understanding this blocking mechanism maybe improve cancer therapies.

Funder

Ligue Contre le Cancer

Conseil Régional du Centre-Val de Loire

Wellcome Trust

Biotechnology and Biological Sciences Research Council

Education Department of Henan Province

Fondation pour la Recherche Médicale

National Institutes of Health

Publisher

Wiley

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