Agostinis P, Goris J, Pinna L A, Marchiori F, Perich J W, Meyer H E, Merlevede W
Afdeling Biochemie, Faculteit Geneeskunde, Katholieke Universiteit te Leuven, Belgium.
Eur J Biochem. 1990 Apr 30;189(2):235-41. doi: 10.1111/j.1432-1033.1990.tb15482.x.
The substrate specificity of the different forms of the polycation-stimulated (PCS, type 2A) protein phosphatases and of the active catalytic subunit of the ATP, Mg-dependent (type 1) phosphatase (AMDC) was investigated, using synthetic peptides phosphorylated by either cyclic-AMP-dependent protein kinase or by casein kinase-2. The PCS phosphatases are very efficient toward the Thr(P) peptides RRAT(P)VA and RRREEET(P)EEE when compared with the Ser(P) analogues RRAS(P)VA and RRREEES(P)EEEAA. Despite their distinct sequence, both Thr(P) peptides are excellent substrates for the PCSM and PCSH1 phosphatases, being dephosphorylated faster than phosphorylase a. The slow dephosphorylation of RRAS(P)VA by the PCS phosphatases could be increased substantially by the insertion of N-terminal (Arg) basic residues. In contrast with the latter, the AMDC phosphatase shows very poor activity toward all the phosphopeptides tested, without preference for either Ser(P) or Thr(P) peptides. However, N-terminal basic residues also favor the dephosphorylation of otherwise almost inert substrates by the AMDC phosphatase. Hence, while the dephosphorylation of Thr(P) substrates by the PCS phosphatases is highly favored by the nature of the phosphorylated amino acid, phosphatase activity toward Ser(P)-containing peptides may require specific determinants in the primary structure of the phosphorylation site.
利用由环磷酸腺苷依赖性蛋白激酶或酪蛋白激酶-2磷酸化的合成肽,研究了不同形式的聚阳离子刺激型(PCS,2A型)蛋白磷酸酶以及ATP、Mg依赖性(1型)磷酸酶(AMDC)的活性催化亚基的底物特异性。与丝氨酸(P)类似物RRAS(P)VA和RRREEES(P)EEEAA相比,PCS磷酸酶对苏氨酸(P)肽RRAT(P)VA和RRREEET(P)EEE的作用非常有效。尽管它们的序列不同,但两种苏氨酸(P)肽都是PCSM和PCSH1磷酸酶的优良底物,其去磷酸化速度比磷酸化酶a快。通过插入N端(精氨酸)碱性残基,PCS磷酸酶对RRAS(P)VA的缓慢去磷酸化作用可显著增强。与后者相反,AMDC磷酸酶对所有测试的磷酸肽活性都很差,对丝氨酸(P)或苏氨酸(P)肽均无偏好。然而,N端碱性残基也有利于AMDC磷酸酶对原本几乎惰性的底物进行去磷酸化。因此,虽然PCS磷酸酶对苏氨酸(P)底物的去磷酸化作用因磷酸化氨基酸的性质而受到高度促进,但对含丝氨酸(P)肽的磷酸酶活性可能需要磷酸化位点一级结构中的特定决定因素。