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一种特异性可逆酪氨酸-O-磷酸磷酸酶的纯化

Purification of a specific reversible tyrosine-O-phosphate phosphatase.

作者信息

Fukami Y, Lipmann F

出版信息

Proc Natl Acad Sci U S A. 1982 Jul;79(14):4275-9. doi: 10.1073/pnas.79.14.4275.

Abstract

A phosphatase specific for tyrosine-O-phosphate (Tyr-P) was separated from several nonspecific phosphatases present in the third instar larvae of Drosophila melanogaster. The enzyme hydrolyzed L-Tyr-P, with an apparent Km of 0.14 mM, but not D-Tyr-P after being freed from hydrolytic activity toward p-nitrophenyl phosphate, the common phosphatase substrate. Such purified preparations also catalyzed a reversible phosphate transfer reaction from unlabeled Tyr-P to [3H]tyrosine. The transfer activity was L4-14% of the hydrolytic activity, depending on the initial concentration of tyrosine (0.25-4.0 mM). The two activities coincided throughout purification. However, they differed in pH optimum, that of hydrolysis being 6.5-7 and that of phosphate transfer being 7.7.5. The two activities were also differentially inhibited by 1-p-bromotetramisole oxalate in the presence of EDTA and by Mn2+. Addition of Mg2+ did not affect either hydrolysis or phosphate transfer, but 5 mM Zn2+ was 65% inhibitory to both. Sodium fluoride strongly inhibited both reactions, and this inhibition was reversed by EDTA, while EDTA itself had no effect. Pi had no effect and no detectable incorporation of 32Pi into Tyr-P was observed, indicating that the phosphate transfer reaction is not a simple reversal of hydrolysis. No ATP-linked phosphorylation of tyrosine was found.

摘要

从黑腹果蝇三龄幼虫中存在的几种非特异性磷酸酶中分离出一种对酪氨酸 - O - 磷酸(Tyr - P)具有特异性的磷酸酶。该酶水解L - Tyr - P,表观Km为0.14 mM,但在消除对常见磷酸酶底物对硝基苯磷酸酯的水解活性后,不水解D - Tyr - P。这种纯化制剂还催化了从未标记的Tyr - P到[3H]酪氨酸的可逆磷酸转移反应。转移活性为水解活性的4 - 14%,这取决于酪氨酸的初始浓度(0.25 - 4.0 mM)。在整个纯化过程中,这两种活性是一致的。然而,它们的最适pH不同,水解的最适pH为6.5 - 7,磷酸转移的最适pH为7.5 - 7.7。在存在EDTA和Mn2 +的情况下,这两种活性还受到1 - 对溴四咪唑草酸盐的不同抑制。添加Mg2 +对水解或磷酸转移均无影响,但5 mM Zn2 +对两者均有65%的抑制作用。氟化钠强烈抑制这两种反应,且这种抑制可被EDTA逆转,而EDTA本身无作用。Pi无作用,且未观察到32Pi掺入Tyr - P,这表明磷酸转移反应不是水解的简单逆转。未发现酪氨酸的ATP连接磷酸化。

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