p22phox可以阻止SERCA2a的氧化,并将其稳定在心脏中。

IF 10.8 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Yasuki Nakada, Allen Sam Titus, Wataru Mizushima, Yanfei Yang, Peiyong Zhai, Yimin Tian, Shinichi Oka, Toshihide Kashihara, Nadezhda Fefelova, Sri Harika Pamarthi, Tong Liu, Hong Li, Lai-Hua Xie, Koichiro Takayama, Soichiro Ikeda, Masato Matsushita, Chun Yang Huang, Chiao-Po Hsu, Kenji Onoue, Yoshihiko Saito, Junichi Sadoshima
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引用次数: 0

摘要

肌浆/内质网(SR/ER) Ca2+ atp酶2a (SERCA2a)介导Ca2+再摄取到心肌细胞的SR。SERCA2a的失活或下调导致衰竭心脏收缩性降低。在这里,我们发现SERCA2a受p22phox调控,p22phox是NADPH氧化酶的异二聚体伴侣。内源性p22phox因压力过载而上调,但小鼠心脏特异性p22phox敲除(cKO)会加重心力衰竭,增强SERCA2a的下调,并增加sr中的氧化应激。我们发现p22phox与SERCA2a相互作用,阻止其在Cys498处氧化,随后被Smurf1和Hrd1 E3泛素连接酶降解。将p22phox cKO小鼠与SERCA2a- c498s敲入小鼠杂交,使氧化敏感和促进降解的半胱氨酸残基发生突变,减轻了p22phox cKO小鼠压力过载后SERCA2a下调和心功能障碍的加剧。未来阻止SERCA2a在Cys498位点氧化的分子干预可能会阻止其在心力衰竭期间的下调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

p22phox prevents the oxidation of SERCA2a and stabilizes it in the heart

p22phox prevents the oxidation of SERCA2a and stabilizes it in the heart
Sarcoplasmic/endoplasmic reticulum (SR/ER) Ca2+ ATPase 2a (SERCA2a) mediates Ca2+ reuptake into the SR in cardiomyocytes. The inactivation or downregulation of SERCA2a leads to reduced contractility in the failing heart. Here we show that SERCA2a is regulated by p22phox, a heterodimeric partner of NADPH oxidases. Endogenous p22phox was upregulated by pressure overload, but cardiac-specific p22phox knockout (cKO) in mice exacerbated heart failure, enhanced the downregulation of SERCA2a and increased oxidative stress in the SR. We show that p22phox interacts with SERCA2a, preventing its oxidation at Cys498 and subsequent degradation by the Smurf1 and Hrd1 E3 ubiquitin ligases. The exacerbation of SERCA2a downregulation and cardiac dysfunction following pressure overload in p22phox cKO mice was alleviated when these mice were crossed with SERCA2a-C498S knock-in mice, in which the oxidation-susceptible and degradation-promoting cysteine residue is mutated. Future molecular interventions to prevent the oxidation of SERCA2a at Cys498 may prevent its downregulation during heart failure. Nakada, Titus et al. show that p22phox, a heterodimeric partner of NADPH oxidases, prevents sarcoplasmic/endoplasmic reticulum Ca2+ ATPase 2a (SERCA2a) oxidation at Cys498 and its downregulation. This study suggests that therapeutic interventions to protect this residue may sustain SERCA2a expression in heart failure.
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