Segal R A, Luck D J
J Cell Biol. 1985 Nov;101(5 Pt 1):1702-12. doi: 10.1083/jcb.101.5.1702.
An in vitro system was devised for studying phosphorylation of Chlamydomonas reinhardtii axonemal proteins. Many of the polypeptides phosphorylated in this system could be identified as previously described axonemal components that are phosphorylated in vivo. The in vitro system apparently preserved the activities of diverse axonemal kinases without greatly altering the substrate specificity of the enzymes. The in vitro system was used to study the effect of calcium concentration on axonemal protein phosphorylation. Calcium has previously been demonstrated to initiate the axonemal reversal reaction of the photophobic response; the in vitro system made it possible to investigate the possibility that this calcium effect is mediated by protein phosphorylation. Calcium specifically altered the phosphorylation of only two axonemal proteins; the phosphorylation of an otherwise unidentified 85,000 Mr protein was repressed by calcium concentrations greater than or equal to 10(-6) M, while the phosphorylation of the previously identified 95,000 Mr protein b4 was stimulated by calcium at concentrations greater than 10(-6) M. Protein b4 is one of six polypeptides that are deficient in the mbo mutants, strains that do not exhibit a photophobic reversal reaction. Therefore, this calcium-stimulated phosphorylation may be involved in initiating the photophobic response. Neither calmodulin nor the C-kinase could be implicated in b4 phosphorylation. The calcium-dependent activation of the b4 kinase was not affected by several drugs that bind to and inhibit calmodulin, or by the addition of exogenous calmodulin. Activators and inhibitors of the calcium-phospholipid-dependent C kinase also had no effect on b4 phosphorylation.
设计了一种体外系统用于研究莱茵衣藻轴丝蛋白的磷酸化。该系统中许多被磷酸化的多肽可被鉴定为先前描述的在体内被磷酸化的轴丝成分。体外系统显然保留了多种轴丝激酶的活性,而没有大幅改变这些酶的底物特异性。该体外系统用于研究钙浓度对轴丝蛋白磷酸化的影响。先前已证明钙可引发避光反应的轴丝反转反应;体外系统使得研究这种钙效应是否由蛋白磷酸化介导成为可能。钙特异性地仅改变了两种轴丝蛋白的磷酸化;当钙浓度大于或等于10(-6) M时,一种未知的85,000 Mr蛋白的磷酸化受到抑制,而当钙浓度大于10(-6) M时,先前鉴定的95,000 Mr蛋白b4的磷酸化受到刺激。蛋白b4是mbo突变体中缺失的六种多肽之一,mbo突变体菌株不表现出避光反转反应。因此,这种钙刺激的磷酸化可能参与启动避光反应。钙调蛋白和C激酶均与b4的磷酸化无关。b4激酶的钙依赖性激活不受几种与钙调蛋白结合并抑制其活性的药物的影响,也不受添加外源钙调蛋白的影响。钙磷脂依赖性C激酶的激活剂和抑制剂对b4的磷酸化也没有影响。