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Int J Mol Sci ; 22(9)2021 Apr 22.
Article in English | MEDLINE | ID: mdl-33922211

ABSTRACT

4-methyl-2,4-bis(4-hydroxyphenyl)pent-1-ene (MBP), a major active metabolite of bisphenol A (BPA), is generated in the mammalian liver. Some studies have suggested that MBP exerts greater toxicity than BPA. However, the mechanism underlying MBP-induced pancreatic ß-cell cytotoxicity remains largely unclear. This study demonstrated the cytotoxicity of MBP in pancreatic ß-cells and elucidated the cellular mechanism involved in MBP-induced ß-cell death. Our results showed that MBP exposure significantly reduced cell viability, caused insulin secretion dysfunction, and induced apoptotic events including increased caspase-3 activity and the expression of active forms of caspase-3/-7/-9 and PARP protein. In addition, MBP triggered endoplasmic reticulum (ER) stress, as indicated by the upregulation of GRP 78, CHOP, and cleaved caspase-12 proteins. Pretreatment with 4-phenylbutyric acid (4-PBA; a pharmacological inhibitor of ER stress) markedly reversed MBP-induced ER stress and apoptosis-related signals. Furthermore, exposure to MBP significantly induced the protein phosphorylation of JNK and AMP-activated protein kinase (AMPK)α. Pretreatment of ß-cells with pharmacological inhibitors for JNK (SP600125) and AMPK (compound C), respectively, effectively abrogated the MBP-induced apoptosis-related signals. Both JNK and AMPK inhibitors also suppressed the MBP-induced activation of JNK and AMPKα and of each other. In conclusion, these findings suggest that MBP exposure exerts cytotoxicity on ß-cells via the interdependent activation of JNK and AMPKα, which regulates the downstream apoptotic signaling pathway.


Subject(s)
AMP-Activated Protein Kinases/metabolism , Apoptosis , Endoplasmic Reticulum Stress/drug effects , Gene Expression Regulation, Enzymologic/drug effects , Insulin-Secreting Cells/pathology , MAP Kinase Signaling System/drug effects , Phenols/toxicity , Animals , Cell Survival , Insulin-Secreting Cells/drug effects , Insulin-Secreting Cells/metabolism , Rats , Signal Transduction
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