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Berberine Regulation of Cellular Oxidative Stress, Apoptosis and Autophagy by Modulation of m 6 A mRNA Methylation through Targeting the Camk1db /ERK Pathway in Zebrafish-Hepatocytes.

Meijuan ZhangJin LiuChengbing YuShangshang TangGuangzhen JiangJing ZhangHong-Cai ZhangJianxiong XuWeina Xu
Published in: Antioxidants (Basel, Switzerland) (2022)
Berberine (BBR) ameliorates cellular oxidative stress, apoptosis and autophagy induced by lipid metabolism disorder, however, the molecular mechanism associated with it is not well known. To study the mechanism, we started with m 6 A methylation modification to investigate its role in lipid deposition zebrafish hepatocytes (ZFL). The results showed that BBR could change the cellular m 6 A RNA methylation level, increase m 6 A levels of Camk1db gene transcript and alter Camk1db gene mRNA expression. Via knockdown of the Camk1db gene, Camk1db could promote cellular ERK phosphorylation levels. Berberine regulated the expression level of Camk1db mRNA by altering the M 6 A RNA methylation of the Camk1db gene, which further affected the synthesis of calmodulin-dependent protein kinase and activated ERK signaling pathway resulting in changes in downstream physiological indicators including ROS production, cell proliferation, apoptosis and autophagy. In conclusion, berberine could regulate cellular oxidative stress, apoptosis and autophagy by mediating Camk1db m 6 A methylation through the targeting of the Camk1db /ERK pathway in zebrafish-hepatocyte.
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