Department of Biochemistry, Kawasaki Medical School, Okayama, Japan.
Laboratory of Microbiology, Showa Pharmaceutical University, Machida, Japan.
Free Radic Res. 2021 Oct;55(9-10):996-1004. doi: 10.1080/10715762.2021.2009116. Epub 2022 Jan 11.
NADPH oxidase (Nox) 4 produces HO by forming a heterodimer with p22 and is involved in hemangioendothelioma development through monocyte chemoattractant protein-1 (MCP-1) upregulation. Here, we show that Nox4 protein levels were maintained by p22 in hemangioendothelioma cells and Nox4 protein stability was dependent on p22 coexpression. Conversely, the degradation of Nox4 monomer was enhanced by p22 knockdown. Under hypoxic conditions in hemangioendothelioma cells, p22 was downregulated at the mRNA and protein levels. Downregulation of p22 protein resulted in the enhanced degradation of Nox4 protein in hypoxia-treated hemangioendothelioma cells. In contrast, Nox2, a Nox isoform, was not altered at the protein level under hypoxic conditions. Nox2 exhibited a higher affinity for p22 compared with Nox4, suggesting that when coexpressed with Nox4 in the same cells, Nox2 acts as a competitor. Nox2 knockdown restored Nox4 protein levels partially reduced by hypoxic treatment. Thus, Nox4 protein levels were attenuated in hypoxia-treated cells resulting from p22 depletion. MCP-1 secretion was decreased concurrently with hypoxia-induced Nox4 downregulation compared with that under normoxia.
NADPH 氧化酶 (Nox) 4 通过与 p22 形成异二聚体产生 HO,并通过上调单核细胞趋化蛋白-1 (MCP-1) 参与血管内皮细胞瘤的发展。在这里,我们表明 p22 在血管内皮细胞瘤细胞中维持 Nox4 蛋白水平,并且 Nox4 蛋白稳定性依赖于 p22 共表达。相反,p22 敲低增强了 Nox4 单体的降解。在血管内皮细胞瘤细胞的缺氧条件下,p22 在 mRNA 和蛋白质水平下调。p22 蛋白下调导致缺氧处理的血管内皮细胞瘤细胞中 Nox4 蛋白降解增强。相比之下,Nox2(一种 Nox 同工型)在缺氧条件下在蛋白质水平上没有改变。Nox2 与 Nox4 相比具有更高的与 p22 的亲和力,表明当在同一细胞中与 Nox4 共表达时,Nox2 充当竞争物。Nox2 敲低部分恢复了缺氧处理导致的 Nox4 蛋白水平降低。因此,由于 p22 耗竭,缺氧处理的细胞中 Nox4 蛋白水平减弱。与正常氧条件下相比,MCP-1 分泌随缺氧诱导的 Nox4 下调而降低。