Beullens M, Van Eynde A, Stalmans W, Bollen M
Afdeling Biochemie, Fakulteit Geneeskunde, Katholieke Universiteit Leuven, Belgium.
J Biol Chem. 1992 Aug 15;267(23):16538-44.
Nuclei from bovine thymus contain a high level of partially latent protein phosphatase 1 (PP-1). More than 90% of this PP-1 is associated with the insoluble chromatin/matrix fraction and can be extracted with 0.3 M NaCl. The salt extract also contains three heat- and acid-stable inhibitory proteins of PP-1 that can be resolved on Mono Q. We have purified two of these nuclear inhibitors of PP-1 (NIPP-1a and NIPP-1b) until homogeneity. They are acidic proteins (pI = 4.4) with a molecular mass of 18 kDa (NIPP-1a) and 16 kDa (NIPP-1b) on SDS-PAGE. Judged from the larger molecular mass that was deduced from gel filtration (35 kDa), NIPP-1a and NIPP-1b appear to be asymmetric or dimeric proteins. The nuclear inhibitors totally inhibited the phosphorylase phosphatase activity of PP-1, but even at a 250-fold higher concentration they did not affect the activities of the other major serine/threonine protein phosphatases (PP-2A, PP-2B, and PP-2C). NIPP-1a and NIPP-1b inhibited the catalytic subunit of PP-1 with an extrapolated Ki of about 1 pM, which is some three orders of magnitude better than the cytoplasmic proteins inhibitor 1/DARPP-32 and modulator. The nuclear inhibitors were not inactivated by incubation with protein phosphatases that inactivate inhibitor 1 and DARPP-32. Unlike modulator, they were not able to convert the catalytic subunit of PP-1 into a MgATP-dependent form. Remarkably, the extent of inhibition of PP-1 by NIPP-1b depended on the nature of the substrate. The phosphorylase phosphatase and casein phosphatase activities of PP-1 were completely blocked by NIPP-1b, whereas the dephosphorylation of basic proteins was either not at all inhibited (histone IIA) or only partially (myelin basic protein). These data may indicate that the acidic NIPP-1b is inactivated through complexation by basic proteins. Indeed, nonphosphorylated histone IIA antagonized the inhibitory effect of NIPP-1b on the casein phosphatase activity of PP-1. Our data show that the nucleus contains specific and potent inhibitory proteins of PP-1 that differ from earlier described cytoplasmic inhibitors. We suggest that these novel proteins may control the activity of nuclear PP-1 on its natural substrate(s).
牛胸腺细胞核含有高水平的部分潜伏性蛋白磷酸酶1(PP - 1)。这种PP - 1的90%以上与不溶性染色质/基质部分相关联,并且能用0.3M NaCl提取。盐提取物还含有三种PP - 1的热稳定和酸稳定抑制蛋白,它们可以在Mono Q上分离。我们已经将其中两种PP - 1的核抑制剂(NIPP - 1a和NIPP - 1b)纯化至同质。在SDS - PAGE上,它们是酸性蛋白(pI = 4.4),分子量分别为18 kDa(NIPP - 1a)和16 kDa(NIPP - 1b)。从凝胶过滤推导的较大分子量(35 kDa)判断,NIPP - 1a和NIPP - 1b似乎是不对称或二聚体蛋白。核抑制剂完全抑制PP - 1的磷酸化酶磷酸酶活性,但即使浓度高250倍,它们也不影响其他主要丝氨酸/苏氨酸蛋白磷酸酶(PP - 2A、PP - 2B和PP - 2C)的活性。NIPP - 1a和NIPP - 1b抑制PP - 1的催化亚基,外推的Ki约为1 pM,这比细胞质蛋白抑制剂1/DARPP - 32和调节剂大约高三个数量级。核抑制剂不会因与使抑制剂1和DARPP - 32失活的蛋白磷酸酶一起孵育而失活。与调节剂不同,它们不能将PP - 1的催化亚基转化为MgATP依赖形式。值得注意的是,NIPP - 1b对PP - 1的抑制程度取决于底物的性质。PP - 1的磷酸化酶磷酸酶和酪蛋白磷酸酶活性被NIPP - 1b完全阻断,而碱性蛋白的去磷酸化要么根本不被抑制(组蛋白IIA),要么只是部分被抑制(髓鞘碱性蛋白)。这些数据可能表明酸性的NIPP - 1b通过与碱性蛋白络合而失活。实际上,未磷酸化的组蛋白IIA拮抗NIPP - 1b对PP - 1酪蛋白磷酸酶活性的抑制作用。我们的数据表明细胞核含有与早期描述的细胞质抑制剂不同的PP - 1特异性强效抑制蛋白。我们认为这些新蛋白可能控制核PP - 1对其天然底物的活性。