El Benna J, Faust R P, Johnson J L, Babior B M
Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 1996 Mar 15;271(11):6374-8. doi: 10.1074/jbc.271.11.6374.
The respiratory burst oxidase is responsible for superoxide (O2) production by phagocytes and B lymphocytes. This multicomponent enzyme is dormant in resting cells but is activated on exposure of the cells to an appropriate stimulus. Upon activation, several serine residues on the cytosolic oxidase subunit p47phox become phosphorylated. Using two-dimensional tryptic phosphopeptide mapping, we studied the phosphorylation of p47phox in 32Pi-loaded Epstein-Barr virus-transformed B lymphoblasts expressing wild type p47phox or any of several P47phox Ser -> Ala mutants. We were able to identify the labeled peptides from wild type p47phox as those contain- ing Ser303/304 Ser315, Ser320, Ser328 and/or Ser359/370, and Ser345/348 ; no 32P-labeled Ser310-containing peptide was found. When purified p47phox, was phosphorylated in vitro by various protein kinases, varying phosphopeptide patterns were observed. Protein kinase C phosphorylated all the peptides except the one containing Ser345/348; protein kinase A phosphorylated the peptide containing Ser320 and one or both of the peptides containing Ser328 and Ser359/370; while mitogen-activated protein kinase phophorylated only the peptide containing Ser345/348. These findings suggest that these three kinases play distinct roles in the activation of the respiratory burst oxidase, each of them catalyzing the phosphorylation of a different group of serines in p47phox.
呼吸爆发氧化酶负责吞噬细胞和B淋巴细胞产生超氧化物(O2)。这种多组分酶在静息细胞中处于休眠状态,但在细胞受到适当刺激时被激活。激活后,胞质氧化酶亚基p47phox上的几个丝氨酸残基会发生磷酸化。我们使用二维胰蛋白酶磷酸肽图谱,研究了在加载32Pi的表达野生型p47phox或几种P47phox丝氨酸→丙氨酸突变体之一的爱泼斯坦-巴尔病毒转化的B淋巴母细胞中p47phox的磷酸化情况。我们能够鉴定出野生型p47phox的标记肽为含有Ser303/304、Ser315、Ser320、Ser328和/或Ser359/370以及Ser345/348的肽;未发现含32P标记的Ser310的肽。当纯化的p47phox在体外被各种蛋白激酶磷酸化时,观察到不同的磷酸肽模式。蛋白激酶C使除含Ser345/348的肽之外的所有肽磷酸化;蛋白激酶A使含Ser320的肽以及含Ser328和Ser359/370的肽中的一个或两个磷酸化;而丝裂原活化蛋白激酶仅使含Ser345/348的肽磷酸化。这些发现表明,这三种激酶在呼吸爆发氧化酶的激活中发挥不同作用,它们各自催化p47phox中不同组丝氨酸的磷酸化。