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人类胎盘碱性磷酸酶在胍和脲变性时的活力变化
引用本文:耿芳宋,王秀丽,张金玉. 人类胎盘碱性磷酸酶在胍和脲变性时的活力变化[J]. 青岛大学医学院学报, 1996, 0(3)
作者姓名:耿芳宋  王秀丽  张金玉
作者单位:青岛医学院生物化学教研室
摘    要:①目的探讨人类胎盘碱性磷酸酶(PALP)在胍和脲变性时的活力变化,为研究PALP的分子进化及其作用机制、构象与活力的关系奠定基础。②方法在不同浓度的盐酸胍或脲的存在下,按标准方法测定PALP在变性终态和变性过程中的活力变化。③结果PALP在胍变性过程中,盐酸胍浓度在2.0mol/L之内其活力增加,大于2.0mol/L时活力降低,5.0mol/L以上活力丧失;PALP在胍变性终态时,不同浓度的盐酸胍均抑制其活力。PALP在脲变性过程中或变性终态时其活力均降低。④结论提示PALP与其他不同来源的碱性磷酸酶起源相同,其构象与作用机制相似

关 键 词:碱性磷酸酶类;变性剂;酶激活;酶抑制

CHANGES OF CATALYTIC ACTIVITY OF HUMAN PLACENTAL ALKALINE PHOSPHATASE DURING DENATURATION BY GUANIDINIUM CHLORIDE AND UREA
Geng Fangsong,Wang Xiuli,Zhang Jinyu [. CHANGES OF CATALYTIC ACTIVITY OF HUMAN PLACENTAL ALKALINE PHOSPHATASE DURING DENATURATION BY GUANIDINIUM CHLORIDE AND UREA[J]. Acta Academiae Medicinae Qingdao Universitatis, 1996, 0(3)
Authors:Geng Fangsong  Wang Xiuli  Zhang Jinyu [
Affiliation:Geng Fangsong,Wang Xiuli,Zhang Jinyu [ Department of Biochemistry,Qingdao Medical College,Qingdao 266021 ]
Abstract:Objective To study the changes of activity of human placental alkaline phosphatase(PALP) during denaturation by guanidinium chloride and urea in order to help understanding the PALP molecular evolution, the mechanism of its action and the relationship between conformation and activity of purified PALP. Method Standard method was used to measure the activity changes of PALP during the process and at the terminal stage of denaturation by different concentrations of guanidinium chloride and urea. Result During denaturation by guanidinium chloride , enhancement of PALP activity was obtained when guanidinium chloride was less than 2.0mol/L. Inhibition of the activity appeared when guanidinium chloride exceeded 2.0mol/L. Finally the PALP activity completelu lost when guanidinium chloride exceeded 5.0mol/L. At the terminal stage of denaturation, any concentrations of guanidinium chloride could inhibit the activity of PALP. The activity of PALP was decreased both during the process and at the termianl stage of denaturation by urea. Conclusion The results suggest PALP and other sources of PALP evolved from a commom ancestral gene, the conformation and mechanism of action is similar.
Keywords:alkaline phosphatases  denaturator  enzyme activation  enzyme inhibition
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