Leusen J H, Verhoeven A J, Roos D
Central Laboratory of the Netherlands Red Cross Blood Transfusion Service, University of Amsterdam.
J Lab Clin Med. 1996 Nov;128(5):461-76. doi: 10.1016/s0022-2143(96)90043-8.
The human NADPH oxidase is a very intriguing enzyme; although its catalytic unit is retained within cytochrome b558, various additional proteins are required for activity of the NADPH oxidase. In the past few years substantial progress has been made to elucidate the protein-protein interactions and the activation events involved. The following facts have become evident: (1) activation of rac and subsequent interaction with p67-phox is crucial for the interaction of p67-phox with cytochrome b558, and probably with gp91-phox; (2) p47-phox interacts with p22-phox, and phosphorylation of 379Ser of p47-phox is obligatory for this event; (3) p47-phox and p67-phox regulate each other's translocation in a positive sense (see also reference 71). To put it differently: it is vital to gain insight in the intrigues within the phox family and associated characters to fully understand NADPH oxidase activation.
人类NADPH氧化酶是一种非常有趣的酶;尽管其催化单元保留在细胞色素b558内,但NADPH氧化酶的活性还需要各种其他蛋白质。在过去几年中,在阐明蛋白质-蛋白质相互作用和相关激活事件方面取得了重大进展。以下事实已变得很明显:(1)rac的激活以及随后与p67-phox的相互作用对于p67-phox与细胞色素b558以及可能与gp91-phox的相互作用至关重要;(2)p47-phox与p22-phox相互作用,并且p47-phox的379Ser磷酸化对于该事件是必不可少的;(3)p47-phox和p67-phox以正向方式相互调节彼此的易位(另见参考文献71)。换句话说:深入了解phox家族内部的奥秘和相关特征对于充分理解NADPH氧化酶的激活至关重要。