Nakano Yoko, Banfi Botond, Jesaitis Algirdas J, Dinauer Mary C, Allen Lee-Ann H, Nauseef William M
Inflammation Program, University of Iowa and Veterans Affairs Medical Center, Iowa City, IA 52241, USA.
Biochem J. 2007 Apr 1;403(1):97-108. doi: 10.1042/BJ20060819.
Otoconia are small biominerals in the inner ear that are indispensable for the normal perception of gravity and motion. Normal otoconia biogenesis requires Nox3, a Nox (NADPH oxidase) highly expressed in the vestibular system. In HEK-293 cells (human embryonic kidney cells) transfected with the Nox regulatory subunits NoxO1 (Nox organizer 1) and NoxA1 (Nox activator 1), functional murine Nox3 was expressed in the plasma membrane and exhibited a haem spectrum identical with that of Nox2, the electron transferase of the phagocyte Nox. In vitro Nox3 cDNA expressed an approximately 50 kDa primary translation product that underwent N-linked glycosylation in the presence of canine microsomes. RNAi (RNA interference)-mediated reduction of endogenous p22phox, a subunit essential for stabilization of Nox2 in phagocytes, decreased Nox3 activity in reconstituted HEK-293 cells. p22phox co-precipitated not only with Nox3 and NoxO1 from transfectants expressing all three proteins, but also with NoxO1 in the absence of Nox3, indicating that p22phox physically associated with both Nox3 and with NoxO1. The plasma membrane localization of Nox3 but not of NoxO1 required p22phox. Moreover, the glycosylation and maturation of Nox3 required p22phox expression, suggesting that p22phox was required for the proper biosynthesis and function of Nox3. Taken together, these studies demonstrate critical roles for p22phox at several distinct points in the maturation and assembly of a functionally competent Nox3 in the plasma membrane.
耳石是内耳中的小生物矿物质,对于正常感知重力和运动不可或缺。正常的耳石生物合成需要Nox3,它是一种在前庭系统中高度表达的Nox(烟酰胺腺嘌呤二核苷酸磷酸氧化酶)。在转染了Nox调节亚基NoxO1(Nox组织者1)和NoxA1(Nox激活剂1)的HEK - 293细胞(人胚肾细胞)中,功能性小鼠Nox3在质膜中表达,并呈现出与吞噬细胞Nox的电子转移酶Nox2相同的血红素光谱。体外,Nox3 cDNA表达了一个约50 kDa的初级翻译产物,该产物在犬微粒体存在的情况下进行N - 连接糖基化。RNA干扰(RNAi)介导的内源性p22phox(吞噬细胞中稳定Nox2所必需的亚基)的减少,降低了重组HEK - 293细胞中的Nox3活性。p22phox不仅与表达所有三种蛋白质的转染子中的Nox3和NoxO1共沉淀,而且在没有Nox3的情况下也与NoxO1共沉淀,表明p22phox与Nox3和NoxO1都存在物理关联。Nox3而非NoxO1的质膜定位需要p22phox。此外,Nox3的糖基化和成熟需要p22phox的表达,这表明p22phox是Nox3正常生物合成和功能所必需的。综上所述,这些研究证明了p22phox在质膜中功能正常的Nox3的成熟和组装的几个不同点上起着关键作用。