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小GTP酶Rac在p22phox依赖性NADPH氧化酶中的作用。

Role of the small GTPase Rac in p22phox-dependent NADPH oxidases.

作者信息

Miyano Kei, Sumimoto Hideki

机构信息

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

出版信息

Biochimie. 2007 Sep;89(9):1133-44. doi: 10.1016/j.biochi.2007.05.003. Epub 2007 May 17.

Abstract

The superoxide-producing phagocyte NADPH oxidase gp91(phox)/Nox2 and the non-phagocytic oxidases Nox1 and Nox3 each form a complex in the membrane with p22(phox), which provides both stabilization and a docking site for organizer proteins. The p22(phox)-complexed Nox2 and Nox1 are dormant on their own, and their activation requires soluble supportive proteins such as a Nox organizer (p47(phox) or Noxo1) and a Nox activator (p67(phox) or Noxa1). The small GTPase Rac directly binds to the activators, and thus plays an essential role in the Nox2-based oxidase containing p47(phox) and p67(phox) or a positive role in Nox1 activity supported by Noxo1 and Noxa1. Although Nox3 complexed with p22(phox) constitutively produce superoxide, the production can be enhanced by supportive proteins. Here we compare the roles of Rac in these p22(phox)-dependent oxidases using the organizer and activator in different combinations. Expression of constitutively active Rac1(Q61L) is essential for activation of the Nox2- or Nox1-based oxidase containing the organizer p47(phox) and either p67(phox) or Noxa1. When these oxidases use Noxo1 as an organizer instead of p47(phox), they produce a small but significant amount of superoxide without expression of Rac1(Q61L), although the production is enhanced by Rac1(Q61L). Thus p47(phox) is likely related to strict dependence on Rac. The Nox3-based oxidase has a similar tendency in the change of the dependence: Rac plays a positive role in Nox3 activation in the presence of p47(phox) and either p67(phox) or Noxa1, whereas Rac fails to upregulate Nox3 activity when p47(phox) is replaced with Noxo1. We also demonstrate that, in the Nox3-based oxidase containing solely p67(phox) as supportive protein, expression of Rac1(Q61L) enhances not only superoxide production but also membrane translocation of p67(phox). Since the enhancements are not observed with a mutant p67(phox) defective in binding to Rac, this GTPase appear to directly recruit p67(phox) to the membrane.

摘要

产生超氧化物的吞噬细胞NADPH氧化酶gp91(phox)/Nox2以及非吞噬性氧化酶Nox1和Nox3各自在膜中与p22(phox)形成复合物,p22(phox)为组织蛋白提供稳定作用和对接位点。与p22(phox)复合的Nox2和Nox1自身处于休眠状态,其激活需要可溶性支持蛋白,如Nox组织蛋白(p47(phox)或Noxo1)和Nox激活剂(p67(phox)或Noxa1)。小GTP酶Rac直接与激活剂结合,因此在含有p47(phox)和p67(phox)的基于Nox2的氧化酶中起关键作用,或在由Noxo1和Noxa1支持的Nox1活性中起积极作用。虽然与p22(phox)复合的Nox3组成性地产生超氧化物,但支持蛋白可增强其产生。在这里,我们使用不同组合的组织蛋白和激活剂比较Rac在这些依赖p22(phox)的氧化酶中的作用。组成型活性Rac1(Q61L)的表达对于激活含有组织蛋白p47(phox)以及p67(phox)或Noxa1的基于Nox2或Nox1的氧化酶至关重要。当这些氧化酶使用Noxo1代替p47(phox)作为组织蛋白时,即使没有Rac1(Q61L)的表达,它们也会产生少量但显著量的超氧化物,尽管Rac1(Q61L)可增强其产生。因此,p47(phox)可能与对Rac的严格依赖性有关。基于Nox3的氧化酶在依赖性变化方面具有类似趋势:在存在p47(phox)以及p67(phox)或Noxa1的情况下,Rac在Nox3激活中起积极作用,而当p47(phox)被Noxo1取代时,Rac无法上调Nox3活性。我们还证明,在仅含有p67(phox)作为支持蛋白的基于Nox3的氧化酶中,Rac1(Q61L)的表达不仅增强超氧化物的产生,还增强p67(phox)的膜转位。由于在与Rac结合缺陷的突变型p67(phox)中未观察到这种增强,这种GTP酶似乎直接将p67(phox)招募到膜上。

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