Université Paris-Saclay, Institut de Chimie Physique UMR 8000, CNRS, 91405, Orsay Cedex, France.
Université Paris Saclay, UMR 9019 CNRS, Gustave Roussy, 94800, Villejuif, France.
Free Radic Biol Med. 2023 Apr;199:113-125. doi: 10.1016/j.freeradbiomed.2023.02.019. Epub 2023 Feb 23.
Poldip2 was shown to be involved in oxidative signaling to ensure certain biological functions. It was proposed that, in VSMC, by interaction with the Nox4-associated membrane protein p22, Poldip2 stimulates the level of reactive oxygen species (ROS) production. In vitro, with fractionated membranes from HEK393 cells over-expressing Nox4, we confirmed the up-regulation of NADPH oxidase 4 activity by the recombinant and purified Poldip2. Besides Nox4, the Nox1, Nox2, or Nox3 isoforms are also established partners of the p22 protein raising the question of their regulation by Poldip2 and of the effect in cells expressing simultaneously different Nox isoforms. In this study, we have addressed this issue by investigating the potential regulatory role of Poldip2 on NADPH oxidase 2, present in phagocyte cells. Unexpectedly, the effect of Poldip2 on phagocyte NADPH oxidase 2 was opposite to that observed on NADPH oxidase 4. Using membranes from circulating resting neutrophils, the ROS production rate of NADPH oxidase 2 was down-regulated by Poldip2 (2.5-fold). The down-regulation effect could not be correlated to the interaction of Poldip2 with p22 but rather, to the interaction of Poldip2 with the p47 protein, one of the regulatory proteins of the phagocyte NADPH oxidase. Our results show that the interaction of Poldip2 with p47 constitutes a novel regulatory mechanism that can negatively modulate the activity of NADPH oxidase 2 by trapping the so-called "adaptor" subunit of the complex. Poldip2 could act as a tunable switch capable of specifically regulating the activities of NADPH oxidases. This selective regulatory role of Poldip2, positive for Nox4 or negative for Nox2 could orchestrate the level and the type of ROS generated by Nox enzymes in the cells.
Poldip2 被证明参与氧化信号传递,以确保某些生物功能。有人提出,在 VSMC 中,Poldip2 通过与 Nox4 相关的膜蛋白 p22 相互作用,刺激活性氧 (ROS) 产生水平。在体外,用表达 Nox4 的 HEK393 细胞的分段膜,我们证实了重组和纯化的 Poldip2 对 NADPH 氧化酶 4 活性的上调。除了 Nox4,Nox1、Nox2 或 Nox3 同工型也是 p22 蛋白的既定伴侣,这引发了它们是否受 Poldip2 调节以及在同时表达不同 Nox 同工型的细胞中的作用的问题。在这项研究中,我们通过研究 Poldip2 对吞噬细胞 NADPH 氧化酶 2 的潜在调节作用来解决这个问题,NADPH 氧化酶 2 存在于吞噬细胞中。出乎意料的是,Poldip2 对吞噬细胞 NADPH 氧化酶 2 的作用与对 NADPH 氧化酶 4 的作用相反。使用来自循环静息中性粒细胞的膜,Poldip2 下调 NADPH 氧化酶 2 的 ROS 产生率(2.5 倍)。下调效应不能与 Poldip2 与 p22 的相互作用相关联,而是与 Poldip2 与 p47 蛋白的相互作用相关联,p47 蛋白是吞噬细胞 NADPH 氧化酶的调节蛋白之一。我们的结果表明,Poldip2 与 p47 的相互作用构成了一种新的调节机制,通过捕获复合物的所谓“接头”亚基,可负调节 NADPH 氧化酶 2 的活性。Poldip2 可以作为一种可调谐开关,能够特异性地调节 NADPH 氧化酶的活性。Poldip2 的这种选择性调节作用,对 Nox4 为正,对 Nox2 为负,可协调细胞中 Nox 酶产生的 ROS 的水平和类型。