Imazu M, Imaoka T, Usui H, Kinohara N, Takeda M
J Biochem. 1981 Sep;90(3):851-62. doi: 10.1093/oxfordjournals.jbchem.a133542.
Pig heart phosphoprotein phosphatase [phosphoprotein phosphophydrolase, EC 3.1.3.16] of Mr 224,000 was dissociated by gel-filtration on Sephacryl S-300, into an active subunit (alpha subunit) of Mr 31,000 and inactive subunits of higher molecular weight in the presence of 6 M urea. After the removal of urea, these subunits reassociated, forming two enzyme forms of Mr 237,000 (Form 1) and Mr 123,000 (Form 2). Form 2 was produced by association of the alpha subunit with an inactive subunit (beta subunit) of Mr 80,000, while Form 1 was formed by combination of the alpha subunit with a complex of inactive subunits which was eluted from a Sephadex G-150 column in fractions of molecular weight range greater than 80,000. The dissociation and reassociation of the subunits of Form 1 by the same urea method produced not only Form 1, but also significant amounts of Form 2, indicating that the inactive subunits of Form 1 were a complex of the beta subunit with another inactive subunit(s). The molecular parameters and other properties of Form 1 were very close to those of the original enzyme. By the conversion of Form 1 to Form 2, the activities of Form 1 towards phosphorylase a and glycogen synthetase b were enhanced 2-3 fold with no significant change in activity towards P-H1 histone or in response to the stimulatory effect of Mg(CH3COO)2 on the dephosphorylation of P-H2B histone. However, removal of the beta subunit from From 2 resulted in strong suppression of activity towards P-H1 histone and response to the salt effect with lesser effects on the activities of Form 2 towards phosphorylase a and glycogen synthase b.
猪心磷蛋白磷酸酶[磷蛋白磷酸水解酶,EC 3.1.3.16],分子量为224,000,在6M尿素存在下,通过Sephacryl S-300凝胶过滤解离为分子量为31,000的活性亚基(α亚基)和更高分子量的无活性亚基。去除尿素后,这些亚基重新结合,形成分子量为237,000的两种酶形式(形式1)和分子量为123,000的形式2。形式2是由α亚基与分子量为80,000的无活性亚基(β亚基)结合产生的,而形式1是由α亚基与无活性亚基复合物结合形成的,该复合物从Sephadex G-150柱上以分子量范围大于80,000的级分洗脱。通过相同的尿素方法使形式1的亚基解离和重新结合,不仅产生了形式1,还产生了大量的形式2,这表明形式1的无活性亚基是β亚基与另一个无活性亚基的复合物。形式1的分子参数和其他性质与原始酶非常接近。通过将形式1转化为形式2,形式1对磷酸化酶a和糖原合成酶b的活性提高了2 - 3倍,而对P-H1组蛋白的活性或对Mg(CH3COO)2对P-H2B组蛋白去磷酸化的刺激作用的响应没有显著变化。然而,从形式2中去除β亚基会导致对P-H1组蛋白的活性和对盐效应的响应受到强烈抑制,而对形式2对磷酸化酶a和糖原合酶b的活性影响较小。