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HMGB1 induces hepcidin upregulation in astrocytes and causes an acute iron surge and subsequent ferroptosis in the postischemic brain.
Davaanyam, Dashdulam; Lee, Hahnbi; Seol, Song-I; Oh, Sang-A; Kim, Seung-Woo; Lee, Ja-Kyeong.
Afiliación
  • Davaanyam D; Department of Anatomy, Inha University School of Medicine, Incheon, 22212, Korea.
  • Lee H; Department of Anatomy, Inha University School of Medicine, Incheon, 22212, Korea.
  • Seol SI; Department of Anatomy, Inha University School of Medicine, Incheon, 22212, Korea.
  • Oh SA; Department of Anatomy, Inha University School of Medicine, Incheon, 22212, Korea.
  • Kim SW; Department of Biomedical Sciences, Inha University School of Medicine, Inchon, 22212, Korea.
  • Lee JK; Department of Anatomy, Inha University School of Medicine, Incheon, 22212, Korea. jklee@inha.ac.kr.
Exp Mol Med ; 55(11): 2402-2416, 2023 11.
Article en En | MEDLINE | ID: mdl-37907744
ABSTRACT
Dysregulation of brain iron levels causes functional disturbances and damages neurons. Hepcidin (a peptide hormone) plays a principal role in regulating intracellular iron levels by modulating ferroportin (FPN, the only known iron exporter) through triggering its internalization and lysosomal degradation. We observed a significant and rapid iron surge in the cortices of ischemic hemispheres at 3 h after cerebral ischemia (middle cerebral artery occlusion, MCAO) that was maintained until 4 d post-MCAO. We showed upregulation of hepcidin expression in the brain as early as 3 h post-MCAO, mainly in astrocytes, and significant hepcidin accumulation in serum from 6 h post-MCAO, and these inductions were maintained for 1 day and 7 days, respectively. High mobility group box 1 (HMGB1), a prototypic danger-associated molecular pattern, accumulates markedly after transient MCAO and plays critical roles in damage aggravation via its proinflammatory effects. Here, we demonstrated that treatment with recombinant HMGB1 stimulated astrocytes to induce hepcidin expression in a TLR4- and CXCR4-dependent manner. Furthermore, hepcidin-mediated intracellular iron accumulation in neurons was confirmed by an experiment using N-methyl-D-aspartate (NMDA)-conditioned medium-treated primary astrocytes and fresh primary cortical neurons treated with hepcidin-containing astrocyte-conditioned medium. Moreover, HMGB1-mediated local hepcidin upregulation and subsequent local iron surge were found to cause ferroptosis in the postischemic brain, which was suppressed by the functional blocking of HMGB1 using intranasally administered HMGB1 A box or anti-HMGB1 antibody. These findings show that HMGB1 serves as a ferroptosis inducer by upregulating hepcidin in astrocytes and thus aggravates acute damage in the postischemic brain.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteína HMGB1 / Ferroptosis Idioma: En Revista: Exp Mol Med Asunto de la revista: BIOLOGIA MOLECULAR / BIOQUIMICA Año: 2023 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteína HMGB1 / Ferroptosis Idioma: En Revista: Exp Mol Med Asunto de la revista: BIOLOGIA MOLECULAR / BIOQUIMICA Año: 2023 Tipo del documento: Article