Cayla X, Goris J, Hermann J, Hendrix P, Ozon R, Merlevede W
Afdeling Biochemie, Faculteit Geneeskunde, Katholieke Universiteit te Leuven, Belgium.
Biochemistry. 1990 Jan 23;29(3):658-67. doi: 10.1021/bi00455a010.
PTPA, a specific phosphotyrosyl phosphatase activator of the PCSH2 and PCSL protein phosphatases, was purified up to apparent homogeneity from Xenopus laevis ovaries and rabbit skeletal muscle and highly purified from dog liver. PTPA appears as a 40-kDa protein in gel filtration, as well as in sucrose gradient centrifugation, and as a 37-39-kDa protein doublet in SDS-PAGE. Its estimated cellular concentration of 0.75 microM in oocytes or 0.25 microM in rabbit skeletal muscle is suggestive of an important role in the regulation of the cellular PTPase activity. The PTPase activation reaction of the PCSL phosphatase is time-dependent, ATP and Mg2+ being essential cofactors [A50(ATP) = 0.12 mM in the presence of 5 mM MgCl2]. With RCM lysozyme as substrate, the specific activity of the PTPA-activated PCSL phosphatase is 700 nmol of Pi/(min.mg). The pH optimum of the PTPase shifts from 8.5-9 in basal conditions to a neutral pH (7-7.5), and the A50 for the essential metal ion Mg2+ is decreased (3 mM). The activation is rapidly reversed in the presence of the substrate, and more slowly after removal of ATP.Mg. The PTPA-activated PCSL phosphatase represents a major PTPase activity in the cytosol of X. laevis oocytes (at least 50% of the measurable PTPase with RCM lysozyme phosphorylated on tyrosyl residues). The PTPA activation is specific for the PTPase activity of the PCSL and PCSH2 phosphatases, without affecting their phosphoseryl/threonyl phosphatase activity. However, effectors of the phosphorylase phosphatase activity, such as polycations and okadaic acid, also influence the PTPase activity. Phosphorylase alpha inhibits the activated PTPase activity (I50 = 5 microM). The PTPase activity of the other oligomeric PCS phosphatases (PCSH1 and PCSM) is not influenced, suggesting an inhibitory role for some of their subunits. This activation is compared with the recently described PTPase stimulation of the PCS phosphatases by ATP/PPi [Goris, J., Pallen, C. J., Parker, P. J., Hermann, J., Waterfield, M. D., & Merlevede, W. (1988) Biochem. J. 256, 1029-1034] and by tubulin [Jessus, C., Goris, J., Cayla, X., Hermann, J., Hendrix, P., Ozon, R., & Merlevede, W. (1989) Eur. J. Biochem. 180, 15-22].
PTPA是PCSH2和PCSL蛋白磷酸酶的一种特异性磷酸酪氨酸磷酸酶激活剂,已从非洲爪蟾卵巢和兔骨骼肌中纯化至表观均一,并从狗肝脏中高度纯化。在凝胶过滤以及蔗糖梯度离心中,PTPA呈现为一种40 kDa的蛋白质,而在SDS-PAGE中则呈现为37 - 39 kDa的蛋白质双峰。其在卵母细胞中的估计细胞浓度为0.75 microM,在兔骨骼肌中为0.25 microM,这表明它在调节细胞PTPase活性中起重要作用。PCSL磷酸酶的PTPase激活反应是时间依赖性的,ATP和Mg2+是必需的辅助因子(在5 mM MgCl2存在下,A50(ATP) = 0.12 mM)。以RCM溶菌酶为底物,PTPA激活的PCSL磷酸酶的比活性为700 nmol Pi/(min.mg)。PTPase的最适pH从基础条件下的8.5 - 9转变为中性pH(7 - 7.5),必需金属离子Mg2+的A50降低(3 mM)。在底物存在下,激活迅速逆转,去除ATP.Mg后逆转较慢。PTPA激活的PCSL磷酸酶代表非洲爪蟾卵母细胞胞质溶胶中的主要PTPase活性(至少占以酪氨酸残基磷酸化的RCM溶菌酶为底物时可测量的PTPase的50%)。PTPA激活对PCSL和PCSH2磷酸酶的PTPase活性具有特异性,不影响它们的磷酸丝氨酸/苏氨酸磷酸酶活性。然而,磷酸化酶磷酸酶活性的效应物,如聚阳离子和冈田酸,也会影响PTPase活性。磷酸化酶α抑制激活的PTPase活性(I50 = 5 microM)。其他寡聚PC磷酸酶(PCSH1和PCSM)的PTPase活性不受影响,这表明它们的一些亚基具有抑制作用。将这种激活与最近描述的ATP/PPi [Goris, J., Pallen, C. J., Parker, P. J., Hermann, J., Waterfield, M. D., & Merlevede, W. (1988) Biochem. J. 256, 1029 - 1034]和微管蛋白[Jessus, C., Goris, J., Cayla, X., Hermann, J., Hendrix, P., Ozon, R., & Merlevede, W. (1989) Eur. J. Biochem. 180, 15 - 22]对PC磷酸酶的PTPase刺激进行了比较。