Arsenic-induced cell proliferation is associated with enhanced ROS generation, Erk signaling and CyclinA expression |
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Authors: | Rajdeep Chowdhury Raghunath Chatterjee Ashok K. Giri Chitra Mandal Keya Chaudhuri |
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Affiliation: | 1. Molecular & Human Genetics Division, Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Kolkata 700032, India;2. Infectious Diseases & Immunology Division, Indian Institute of Chemical Biology, Kolkata 700032, India |
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Abstract: | Arsenic is a well-established human carcinogen; however molecular mechanisms to arsenic-induced carcinogenesis are complex and elusive. The present study identifies a potential biomarker of arsenic exposure, and redefines arsenic-induced signaling in stimulation of cell proliferation. The effect of arsenic exposure on gene expression was evaluated in PBMC of arsenic-exposed individuals selected from a severely affected district of West Bengal, India. A novel, un-documented biomarker of arsenic exposure, CyclinA was identified by microarray analysis from the study. Non-transformed cell lines HaCat and Int407 when exposed to clinically achievable arsenic concentration showed significant increase of CyclinA substantiating the clinical data. An associated increase in S phase population of cells in cell cycle, indicative of enhanced proliferation was also noticed. On further investigation of the pathway to arsenic-induced proliferation, we observed that arsenic resulted: ROS generation; activated Erk signaling; stimulated AP-1 activity, including immediate early genes, c-Jun and c-Fos. N-Acetyl-l-cysteine, a ROS quencher, blocked the arsenic-induced effects. Our study underlines a previously undefined mechanism by which arsenic imparts its toxicity and results in uncontrolled cell proliferation. |
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Keywords: | CyclinA Erk Mitogen activated protein kinase (MAPK) Reactive oxygen species (ROS) Arsenic |
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