Hisanaga S, Uchiyama M, Hosoi T, Yamada K, Honma N, Ishiguro K, Uchida T, Dahl D, Ohsumi K, Kishimoto T
Laboratory of Cell and Developmental Biology, Faculty of Biosciences, Tokyo Institute of Technology, Yokohama, Japan.
Cell Motil Cytoskeleton. 1995;31(4):283-97. doi: 10.1002/cm.970310405.
Using dephosphorylated neurofilament (NF) proteins as substrates, the kinase with a higher activity for the dephosphorylated NF-H than the phosphorylated form of NF-H was searched for in the porcine brain extract. Most NF-H kinase activity in the brain extract pelleted with microtubules. The NF-H kinase purified from a high salt extract of the microtubule pellets was composed of cdk5 and a 26 kDa protein, a fragment of the 35 kDa regulatory subunit of cdk5. In contrast to the association of the active kinase with microtubules, each of uncomplexed cdk5 and the 35 kDa regulatory subunit was differently distributed in the supernatant fraction and the pellet, respectively, by ultracentrifugation of the brain extract. Dephosphorylated forms of NF-H and NF-M became reactive to antibodies recognizing in vivo phosphorylation sites (SMI31, 34, and 36, JJ31 and 51) by phosphorylation with cdk5/p26. cdk5/p26 showed similar enzymatic properties to p34cdc2/cyclin B kinase; the substrate specificity and inhibition by a p34cdc2 kinase specific inhibitor, butyrolactone I. However, p34cdc2/cyclin B kinase was distinguished from cdk5/p26 by its binding to p13suc1 protein and by its reactivity to anti-p34cdc2 antibodies. In spite of similar enzymatic properties of cdk5/p26 and p34cdc2/cyclin B kinase, cdk5/p26 did not display M-phase promoting activity when assayed with a cell-free system of Xenopus egg extract.
以去磷酸化神经丝(NF)蛋白为底物,在猪脑提取物中寻找对去磷酸化NF-H比对磷酸化形式的NF-H具有更高活性的激酶。脑提取物中的大多数NF-H激酶活性与微管一起沉淀。从微管沉淀的高盐提取物中纯化的NF-H激酶由cdk5和一种26 kDa的蛋白质组成,该蛋白质是cdk5的35 kDa调节亚基的片段。与活性激酶与微管的结合相反,通过对脑提取物进行超速离心,未复合的cdk5和35 kDa调节亚基分别在上清液部分和沉淀中以不同方式分布。去磷酸化形式的NF-H和NF-M在用cdk5/p26磷酸化后,对识别体内磷酸化位点的抗体(SMI31、34和36、JJ31和51)产生反应。cdk5/p26表现出与p34cdc2/细胞周期蛋白B激酶相似的酶学性质;具有底物特异性并受p34cdc2激酶特异性抑制剂丁内酯I的抑制。然而,p34cdc2/细胞周期蛋白B激酶通过其与p13suc1蛋白的结合以及对抗p34cdc2抗体的反应性与cdk5/p26区分开来。尽管cdk5/p26和p34cdc2/细胞周期蛋白B激酶具有相似的酶学性质,但在用非洲爪蟾卵提取物的无细胞系统进行测定时,cdk5/p26并未表现出M期促进活性。