Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.
Department of Cardiovascular Surgery, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.
Genes Cells. 2024 Jan;29(1):63-72. doi: 10.1111/gtc.13085. Epub 2023 Nov 20.
The hydrogen peroxide (H O )-producing NADPH oxidase Nox4, forming a heterodimer with p22 , is expressed in a variety of cells including those in the heart to mediate adaptive responses to cellular stresses such as hypoxia. Since Nox4 is constitutively active, H O production is controlled by its protein abundance. Hypoxia-induced Nox4 expression is observed in various types of cells and generally thought to be regulated at the transcriptional level. Here we show that hypoxia upregulates the Nox4 protein level and Nox4-catalyzed H O production without increasing the Nox4 mRNA in rat H9c2 cardiomyocytes. In these cells, the Nox4 protein is stabilized under hypoxic conditions in a manner dependent on the presence of p22 . Cell treatment with the proteasome inhibitor MG132 results in a marked decrease of the Nox4 protein under both normoxic and hypoxic conditions, indicating that the proteasome pathway does not play a major role in Nox4 degradation. The decrease is partially restored by the autophagy inhibitor 3-methyladenine. Furthermore, the Nox4 protein level is upregulated by the lysosome inhibitors bafilomycin A1 and chloroquine. Thus, in cardiomyocytes, Nox4 appears to be degraded via an autophagy-related pathway, and its suppression by hypoxia likely stabilizes Nox4, leading to upregulation of Nox4-catalyzed H O production.
过氧化氢 (H2O2) 产生的 NADPH 氧化酶 Nox4 与 p22 形成异二聚体,在包括心脏在内的各种细胞中表达,介导细胞应激(如缺氧)的适应性反应。由于 Nox4 是组成性激活的,H2O2 的产生受其蛋白丰度控制。缺氧诱导的 Nox4 表达在各种类型的细胞中观察到,通常认为其在转录水平上受到调节。在这里,我们发现在大鼠 H9c2 心肌细胞中,缺氧上调 Nox4 蛋白水平和 Nox4 催化的 H2O2 产生,而不增加 Nox4 mRNA。在这些细胞中,Nox4 蛋白在缺氧条件下稳定存在,这依赖于 p22 的存在。细胞用蛋白酶体抑制剂 MG132 处理,在常氧和缺氧条件下都会导致 Nox4 蛋白明显减少,表明蛋白酶体途径在 Nox4 降解中不起主要作用。自噬抑制剂 3-甲基腺嘌呤可部分恢复减少量。此外,溶酶体抑制剂巴弗洛霉素 A1 和氯喹上调 Nox4 蛋白水平。因此,在心肌细胞中,Nox4 似乎通过自噬相关途径降解,而缺氧对其的抑制可能稳定 Nox4,导致 Nox4 催化的 H2O2 产生上调。