Tung H Y, Alemany S, Cohen P
Eur J Biochem. 1985 Apr 15;148(2):253-63. doi: 10.1111/j.1432-1033.1985.tb08833.x.
Protein phosphatases-2A0, 2A1 and 2A2 have been purified to homogeneity from rabbit skeletal muscle. Approximately 1 mg of phosphatase-2A0 and 2A1, and 0.5 mg of phosphatase-2A2, was isolated from 4000 g muscle within 10 days. Protein phosphatases-2A0 and 2A1 each comprised three subunits, termed A, B' and C (2A0) or A, B and C (2A1), while phosphatase-2A2 contained only two subunits, A and C. The A and C components of phosphatases-2A0, 2A1 and 2A2 had indistinguishable mobilities on sodium dodecyl sulphate/polyacrylamide gels and identical peptide maps. By these criteria, the C component was also identical to the catalytic subunit of phosphatase-2A purified from ethanol-treated muscle extracts. The electrophoretic mobilities of the B and B' subunits were slightly different, and their peptide maps were distinct. The molecular masses of the native enzymes determined by sedimentation equilibrium centrifugation were 181 +/- 6 kDa (2A0), 202 +/- 6 kDa (2A1) and 107 +/- 5 kDa (2A2), while those of the subunits estimated by sodium dodecyl sulphate/polyacrylamide gel electrophoresis were 60 kDa (A), 55 kDa (B), 54 kDa (B') and 36 kDa (C). These values, in conjunction with molar ratios estimated by densitometric analyses of the gels, suggest that the subunit structures of the enzymes are AB'C2 (2A0), ABC2 (2A1) and AC (2A2). Protein phosphatase-2A2 appears to be derived from 2A0 and/or 2A1 during purification through degradation or dissociation of the B' and/or B subunits. Protein phosphatases-2A0, 2A1 and 2A2 were the only phosphorylase phosphatases in rabbit skeletal muscle that were activated by the basic proteins, protamine (A0.5 = 0.25 microM), histone H1 (A0.5 = 0.3 microM) and polylysine (A0.5 = 0.04 microM). Activation by protamine varied over 5-20-fold for phosphatase-2A0 and 5-7-fold for phosphatases-2A1 and 2A2. The dephosphorylation of glycogen synthase was activated by basic proteins in a similar manner to the phosphorylase phosphatase activity. The isolated C subunit was also stimulated by histone H1 and protamine, but 5-10-fold higher concentrations were required, and with phosphorylase as substrate, maximum activation was only about 2-fold. Activation by basic proteins appears to involve their interaction with the A and/or C subunits, but not with the B or B' subunits, or substrates phosphorylase and glycogen synthase.
蛋白磷酸酶-2A0、2A1和2A2已从兔骨骼肌中纯化至同质。在10天内从4000克肌肉中分离出约1毫克磷酸酶-2A0和2A1,以及0.5毫克磷酸酶-2A2。蛋白磷酸酶-2A0和2A1各由三个亚基组成,分别称为A、B'和C(2A0)或A、B和C(2A1),而磷酸酶-2A2仅包含两个亚基,A和C。磷酸酶-2A0、2A1和2A2的A和C组分在十二烷基硫酸钠/聚丙烯酰胺凝胶上具有无法区分的迁移率和相同的肽图。根据这些标准,C组分也与从乙醇处理的肌肉提取物中纯化的磷酸酶-2A的催化亚基相同。B和B'亚基的电泳迁移率略有不同,它们的肽图也不同。通过沉降平衡离心法测定的天然酶的分子量分别为181±6 kDa(2A0)、202±6 kDa(2A1)和107±5 kDa(2A2),而通过十二烷基硫酸钠/聚丙烯酰胺凝胶电泳估计的亚基分子量分别为60 kDa(A)、55 kDa(B)、54 kDa(B')和36 kDa(C)。这些值与通过凝胶密度分析估计的摩尔比相结合,表明这些酶的亚基结构分别为AB'C2(2A0)、ABC2(2A1)和AC(2A2)。在纯化过程中,蛋白磷酸酶-2A2似乎是通过B'和/或B亚基的降解或解离从2A0和/或2A1衍生而来。蛋白磷酸酶-2A0、2A1和2A2是兔骨骼肌中仅有的被碱性蛋白鱼精蛋白(A0.5 = 0.25 microM)、组蛋白H1(A0.5 = 0.3 microM)和聚赖氨酸(A0.5 = 0.04 microM)激活的磷酸化酶磷酸酶。鱼精蛋白对磷酸酶-2A0的激活倍数为5 - 20倍,对磷酸酶-2A1和2A2的激活倍数为5 - 7倍。糖原合酶的去磷酸化以与磷酸化酶磷酸酶活性类似的方式被碱性蛋白激活。分离出的C亚基也受到组蛋白H1和鱼精蛋白的刺激,但所需浓度高5 - 10倍,以磷酸化酶为底物时,最大激活倍数仅约为2倍。碱性蛋白的激活似乎涉及它们与A和/或C亚基的相互作用,而不与B或B'亚基、底物磷酸化酶和糖原合酶相互作用。