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赖氏锥虫外表面上一种受外源无机磷酸盐调节的依赖镁离子的胞外磷酸酶活性。

A Mg(2+)-dependent ecto-phosphatase activity on the external surface of Trypanosoma rangeli modulated by exogenous inorganic phosphate.

作者信息

Fonseca-de-Souza André L, Dick Claudia Fernanda, Dos Santos André Luiz Araújo, Meyer-Fernandes José Roberto

机构信息

Laboratório de Bioquímica Celular, Instituto de Bioquímica Medica, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, UFRJ, Cidade Universitária, Ilha do Fundão, Rio de Janeiro, RJ, Brazil.

出版信息

Acta Trop. 2008 Aug;107(2):153-8. doi: 10.1016/j.actatropica.2008.05.017. Epub 2008 May 29.

Abstract

In this work, we characterized a Mg(2+)-dependent ecto-phosphatase activity present in live Trypanosoma rangeli epimastigotes. This enzyme showed capacity to hydrolyze the artificial substrate for phosphatases, p-nitrophenylphosphate (p-NPP). At saturating concentration of p-NPP, half-maximal p-NPP hydrolysis was obtained with 0.23mM Mg(2+). Ca(2+) had no effect on the basal phosphatase activity, could not substitute Mg(2+) as an activator and in contrast inhibited the p-NPP hydrolysis stimulated by Mg(2+). The dependence on p-NPP concentration showed a normal Michaelis-Menten kinetics for this phosphatase activity with values of V(max) of 8.94+/-0.36 nmol p-NP x h(-1) x 10(-7) cells and apparent K(m) of 1.04+/-0.16 mM p-NPP. Mg(2+)-dependent ecto-phosphatase activity was stimulated by the alkaline pH range. Experiments using inhibitors, such as, sodium fluoride, sodium orthovanadate and ammonium molybdate, inhibited the Mg(2+)-dependent ecto-phosphatase activity. Inorganic phosphate (Pi), a product of phosphatases, inhibited reversibly in 50% this activity. Okadaic acid and microcystin-LR, specific phosphoserine/threonine phosphatase inhibitors, inhibited significantly the Mg(2+)-dependent ecto-phosphatase activity. In addition, this phosphatase activity was able to recognize as substrates only o-phosphoserine and o-phosphothreonine, while o-phosphotyrosine was not a good substrate for this phosphatase. Epimastigote forms of T. rangeli exhibit a typical growth curve, achieving the stationary phase around fifth or sixth day and the Mg(2+)-dependent ecto-phosphatase activity decreased around 10-fold with the cell growth progression. Cells maintained at Pi-deprived medium (2 mM Pi) present Mg(2+)-dependent ecto-phosphatase activity approximately threefold higher than that maintained at Pi-supplemented medium (50 mM Pi).

摘要

在这项研究中,我们对活的兰氏锥虫(Trypanosoma rangeli)上鞭毛体中存在的一种依赖Mg(2+)的胞外磷酸酶活性进行了表征。这种酶显示出能够水解磷酸酶的人工底物对硝基苯磷酸酯(p-NPP)。在p-NPP饱和浓度下,0.23mM Mg(2+)可使p-NPP水解达到最大反应速度的一半。Ca(2+)对基础磷酸酶活性无影响,不能替代Mg(2+)作为激活剂,相反,它会抑制Mg(2+)刺激的p-NPP水解。对p-NPP浓度的依赖性表明,这种磷酸酶活性呈现正常的米氏动力学,V(max)值为8.94±0.36 nmol对硝基苯酚×h(-1)×10(-7)个细胞,表观K(m)值为1.04±0.16 mM p-NPP。碱性pH范围可刺激依赖Mg(2+)的胞外磷酸酶活性。使用抑制剂(如氟化钠、原钒酸钠和钼酸铵)的实验抑制了依赖Mg(2+)的胞外磷酸酶活性。磷酸酶的产物无机磷酸盐(Pi)可逆性地抑制了该活性的50%。冈田酸和微囊藻毒素-LR,特异性的磷酸丝氨酸/苏氨酸磷酸酶抑制剂,显著抑制了依赖Mg(2+)的胞外磷酸酶活性。此外,这种磷酸酶活性只能识别磷酸丝氨酸和磷酸苏氨酸作为底物,而磷酸酪氨酸不是这种磷酸酶的良好底物。兰氏锥虫的上鞭毛体形式呈现典型的生长曲线,在第五或第六天左右达到稳定期,随着细胞生长进程,依赖Mg(2+)的胞外磷酸酶活性下降约10倍。维持在低磷培养基(2 mM Pi)中的细胞,其依赖Mg(2+)的胞外磷酸酶活性比维持在高磷培养基(50 mM Pi)中的细胞高出约三倍。

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