Carmichael D F, Geahlen R L, Allen S M, Krebs E G
J Biol Chem. 1982 Sep 10;257(17):10440-5.
A study of the phosphorylated sites on the regulatory subunit of type II cyclic AMP-dependent protein kinase is described. The site of autophosphorylation, previously reported (Takio, K., Walsh, K. A., Neurath, H., Smith, S. B., Krebs, E. G., and Titani, K. (1980) FEBS Lett. 114, 83-88), is found to contain the only residue phosphorylated by the catalytic subunit. Endogenous protein-bound phosphate, present at a second site, is observed in the NH2-terminal region of purified type II regulatory subunit. A serine residue in this same domain of type II regulatory subunit is shown to be phosphorylated in vitro by casein kinase II. The stoichiometry of phosphate incorporation by casein kinase II indicates a single site of phosphorylation that is equivalent to the site containing the endogenous phosphate. The apparent Km and Vmax of casein kinase II for the phosphorylation of purified type II regulatory subunit containing 0.55 molar equivalents of endogenous phosphate are 36 microM and 3.5 mumol/min/mg, respectively. Phosphatase treatment of type II regulatory subunit decreased the determined Km to 13 microM but does not change the Vmax consistent with the suggestion that casein kinase II is phosphorylating a site partially occupied by endogenous phosphate. Comparison of peptide maps of type II regulatory subunit phosphorylated in vitro by casein kinase II with in vivo modified type II regulatory subunit indicates that the site modified in vitro is also phosphorylated in vivo.
本文描述了对II型环磷酸腺苷依赖性蛋白激酶调节亚基磷酸化位点的研究。先前报道的自磷酸化位点(Takio, K., Walsh, K. A., Neurath, H., Smith, S. B., Krebs, E. G., and Titani, K. (1980) FEBS Lett. 114, 83 - 88)被发现是催化亚基唯一磷酸化的位点。在纯化的II型调节亚基的NH2末端区域观察到存在于第二个位点的内源性蛋白结合磷酸盐。II型调节亚基同一结构域中的一个丝氨酸残基在体外被酪蛋白激酶II磷酸化。酪蛋白激酶II掺入磷酸盐的化学计量表明存在一个单一的磷酸化位点,该位点与含有内源性磷酸盐的位点相当。酪蛋白激酶II对含有0.55摩尔当量内源性磷酸盐的纯化II型调节亚基进行磷酸化的表观Km和Vmax分别为36 microM和3.5 mumol/min/mg。对II型调节亚基进行磷酸酶处理会使测定的Km降至13 microM,但不会改变Vmax,这与酪蛋白激酶II正在磷酸化一个部分被内源性磷酸盐占据的位点的推测一致。将酪蛋白激酶II在体外磷酸化的II型调节亚基的肽图与体内修饰的II型调节亚基进行比较表明,体外修饰的位点在体内也被磷酸化。