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[变形虫的底物特异性]

[Substrate specifity in Amoeba proteus].

作者信息

Sopina V A

出版信息

Tsitologiia. 2006;48(7):610-6.

Abstract

Three different phosphatases ("slow", "middle" and "fast") were found in Amoeba proteus (strain B) after PAGE and a subsequent gel staining in 1-naphthyl phosphate containing incubation mixture (pH 9.0). Substrate specificity of these phosphatases was determined in supernatants of homogenates using inhibitors of phosphatase activity. All phosphatases showed a broad substrate specificity. Of 10 tested compounds, p-nitrophenyl phosphate was a preferable substrate for all 3 phosphatases. All phosphatases were able to hydrolyse bis-p-nitrophenyl phosphate and, hence, displayed phosphodiesterase activity. All phosphatases hydrolysed O-phospho-L-tyrosine to a greater or lesser degree. Only little differences in substrate specificity of phosphatases were noticed: 1) "fast" and "middle" phosphatases hydrolysed naphthyl phosphates and O-phospho-L-tyrosine less efficiently than did "slow" phosphatase; 2) "fast" and "middle" phosphatases hydrolysed 2- naphthyl phosphate to a lesser degree than 1-naphthyl phosphate 3) "fast" and "middle" phosphatases hydrolysed O-phospho-L-serine and O-phospho-L-threonine with lower intensity as compared with "slow" phosphatase; 4) as distinct from "middle" and "slow" phosphatases, the "fast" phosphatase hydrolysed glucose-6-phosphate very poorly. The revealed broad substrate specificity of "slow" phosphatase together with data of inhibitory analysis and results of experiments with reactivation of this phosphatase by Zn2+-ions after its inactivation by EDTA strongly suggest that only the "slow" phosphatase is a true alkaline phosphatase (EC 3.1.3.1). The alkaline phosphatase of A. proteus is secreted into culture medium where its activity is low. The enzyme displays both phosphomono- and phosphodiesterase activities, in addition to supposed protein phosphatase activity. It still remains unknown, to which particular phosphatase class the amoeban "middle" and "fast" phosphatases (pH 9.0) may be assigned.

摘要

在变形虫(B株)中,经聚丙烯酰胺凝胶电泳(PAGE)以及随后在含1-萘基磷酸的孵育混合物(pH 9.0)中进行凝胶染色后,发现了三种不同的磷酸酶(“慢”、“中”和“快”)。使用磷酸酶活性抑制剂在匀浆上清液中测定了这些磷酸酶的底物特异性。所有磷酸酶均表现出广泛的底物特异性。在10种测试化合物中,对硝基苯磷酸是所有这三种磷酸酶的优选底物。所有磷酸酶都能够水解双对硝基苯磷酸,因此表现出磷酸二酯酶活性。所有磷酸酶都或多或少地能水解O-磷酸-L-酪氨酸。在磷酸酶的底物特异性方面仅观察到微小差异:1)“快”和“中”磷酸酶水解萘基磷酸和O-磷酸-L-酪氨酸的效率低于“慢”磷酸酶;2)“快”和“中”磷酸酶水解2-萘基磷酸的程度低于1-萘基磷酸;3)与“慢”磷酸酶相比,“快”和“中”磷酸酶水解O-磷酸-L-丝氨酸和O-磷酸-L-苏氨酸的强度较低;4)与“中”和“慢”磷酸酶不同,“快”磷酸酶水解葡萄糖-6-磷酸的能力很差。所揭示的“慢”磷酸酶广泛的底物特异性,连同抑制分析数据以及该磷酸酶被EDTA灭活后用Zn2+离子重新激活的实验结果,强烈表明只有“慢”磷酸酶是真正的碱性磷酸酶(EC 3.1.3.1)。变形虫的碱性磷酸酶分泌到培养基中,其活性较低。该酶除了具有假定的蛋白质磷酸酶活性外,还表现出磷酸单酯酶和磷酸二酯酶活性。变形虫的“中”和“快”磷酸酶(pH 9.0)究竟属于哪一特定的磷酸酶类别仍然未知。

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