Ca2+ transfer via enhancing ER-Mito coupling contributed to BDE-47- induced hippocampal neuronal necroptosis and cognitive dysfunction
作者:Junhong Geng, Quan Yuan, Chun‐Lin Ni, Yarong Zhang, Xiaoli Liu, Xiaoying Zhu, Xueqin Hao, Gaofeng Liang, Dongmei Wang, Huahao Fan · 发表于:Ecotoxicology and Environmental Safety · 年份:2025 · DOI:10.1016/j.ecoenv.2025.118396 · 被引用次数:8 · 研究领域:Neuroscience and Neuropharmacology Research、Mitochondrial Function and Pathology、Receptor Mechanisms and Signaling
2,2,4,4-Tetrabromodiphenyl ether (BDE-47), a ubiquitous environmental pollutant, has gained increasing attention due to its high level in biological samples and potential neurotoxicity. Recent studies have indicated that the receptor interacting protein kinase 1 (RIPK1)-mediated necroptosis is implicated in BDE-47 cytotoxicity. However, little is known about the underlying mechanism and whether the necroptosis participates in BDE-47-induced neuronal injury and cognitive impairment. Our results indicated that exposure to BDE-47 triggered RIPK1-dependent neuronal necroptosis in mice hippocampi and HT-22 mouse hippocampal neurons. Necrostain-1 (Nec-1), a specific RIPK1 inhibitor, suppressed the RIPK1/RIPK3/mixed lineage kinase-like domain protein (MLKL) signaling and rescued neuronal survival in BDE-47-treated HT-22 neurons. Mechanically, increased mitochondrial Ca 2+ influx precipitated the opening of the mitochondrial permeability transition pore (mPTP), leading to occurrence of hippocampal neuronal necroptosis under BDE-47 stress. BDE-47 exposure induced excessive mitochondria-associated endoplasmic reticulum membranes (MAMs) formation and promoted ER-to-mitochondria Ca 2+ transfer, while diminishing ER-mitochondrial contacts by Glucose-regulated protein 75 (Grp75)-deficiency remarkably prevented mitochondria Ca 2+ overload and opening of mPTP as well as neuronal necroptosis. Notably, Nec-1 pre-treatment could substantially mitigate neuronal/synaptic damage and cognitive impa...