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Perm1 enhances Nrf2-driven antioxidant defense through Keap1 oxidation during myocardial ischemia/reperfusion injury
Shin-ichi Oka, Chun-Yang Huang, Masato Matsushita, Allen Sam Titus, Yasuki Nakada, Risa Mukai, Samta Veera, Youssef Mourad, Ghassan Yehia, Peter Romanienko, Yimin Tian, Peiyong Zhai, Junichi Sadoshima
Shin-ichi Oka, Chun-Yang Huang, Masato Matsushita, Allen Sam Titus, Yasuki Nakada, Risa Mukai, Samta Veera, Youssef Mourad, Ghassan Yehia, Peter Romanienko, Yimin Tian, Peiyong Zhai, Junichi Sadoshima
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Research Article Cardiology Cell biology

Perm1 enhances Nrf2-driven antioxidant defense through Keap1 oxidation during myocardial ischemia/reperfusion injury

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Abstract

Ischemia/reperfusion (IR) enhances oxidative stress, leading to myocardial injury. Although Perm1 promotes cytoprotective mechanisms, the underlying mechanisms are poorly understood. Cysteine oxidation of Keap1 alleviates Cul3-mediated ubiquitination/degradation of Nrf2 and promotes antioxidant transcription. Here we show that Perm1 activates Nrf2 through cysteine oxidation of Keap1 and stabilization of Nrf2. Endogenous Perm1 was downregulated during IR, whereas the rescue of Perm1 reduced IR injury. Downregulation of Perm1 exacerbated oxidative stress, whereas upregulation of Perm1 alleviated it, accompanied by downregulation and upregulation of Nrf2-regulated antioxidant genes, respectively. Perm1 promoted oxidation of cysteine residues in Keap1, possibly through thiol-disulfide exchange reactions, which decreases Keap1-Nrf2 interaction and inhibits Cul3-mediated degradation of Nrf2. We identified Cys121 and Cys746 in Perm1 as critical for Keap1 oxidation and cardioprotection. Thus, Perm1 induces cysteine oxidation of Keap1, thereby conferring myocardial resistance to IR injury by inducing Nrf2 stabilization and transcriptional activation of antioxidant genes.

Authors

Shin-ichi Oka, Chun-Yang Huang, Masato Matsushita, Allen Sam Titus, Yasuki Nakada, Risa Mukai, Samta Veera, Youssef Mourad, Ghassan Yehia, Peter Romanienko, Yimin Tian, Peiyong Zhai, Junichi Sadoshima

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Figure 6

Perm1 promotes Keap1 oxidation.

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Perm1 promotes Keap1 oxidation.
(A and B) Perm1 promoted Keap1 oxidation...
(A and B) Perm1 promoted Keap1 oxidation. Protein thiols in their reduced form were labeled with BIAM in cardiomyocytes with Perm1 knockdown (A) and overexpression (B). BIAM-labeled proteins were pulled down with avidin-agarose. (C) Perm1 promoted H2O2-induced Keap1 oxidation. Cardiomyocytes transduced with Ad-Perm1 were treated with H2O2 (0, 10, 30 and 100 μmol/L) for 30 minutes. BIAM pulldown assays were performed. (D) Perm1 promoted the interaction between Keap1 and a substrate trapping mutant of Trx1 (Flag-Trx1C35S-HA). Cardiomyocytes were transduced with Ad-Perm1 and Ad-Flag-Trx1C35S-HA. Flag-Trx1C35S-HA was immunoprecipitated with anti-Flag antibody. (E) Perm1 oxidized Keap1 in vitro. Recombinant Keap1 reduced with DTT and recombinant Perm1 oxidized with H2O2 were incubated together and subjected to BIAM binding assays. (F) Perm1 promoted intermolecular disulfide bond formation in Keap1. Cardiomyocytes transduced with Ad-Perm1 were treated with H2O2. SDS-PAGE under nonreducing conditions was performed. (G) Keap1 C151S mutant inhibited Perm1-induced Nrf2 upregulation. (H) Keap1 C151S mutant inhibited Perm1-induced reporter gene activity driven by ARE. Statistical significance was determined by Student’s t test (A, B and E) and ANOVA (H). n = 5 (A and B) and 6 (E and H). *P < 0.05. (E–G) Representative data are shown from 3 (E and F) and 2 (G) independent experiments.

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