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出 处:《重庆大学学报(自然科学版)》2016年第3期95-100,共6页Journal of Chongqing University
基 金:中央高校基本科研业务费(CQDXWL-2012-045);教育部留学回国人员启动基金(1020607820120068)资助~~
摘 要:对羟基苯乙酸(HPA)脱羧酶是一类甘氨酸自由基脱羧酶,催化前体对羟基苯乙酸或吲哚乙酸的脱羧反应,形成终产物对羟基甲苯和对甲基吲哚。由于其蛋白质结构中小亚基(HpdC)的存在,使其显示了一些不同于其他已知的几种甘氨酸自由基体系的特性,被认为是一类新型的甘氨基自由基酶体系。前期的研究结果初步显示了HpdC在整个脱羧酶体系中的重要性,但缺乏系统的实验验证。通过构建系列杂化脱羧酶(包括组合杂化酶体系与嵌合杂化酶体系)高表达质粒,对相应的编码蛋白质进行分离纯化以及酶活性检测等,探究了小亚基在整个脱羧酶体系中的功能。研究结果证明,小亚基HpdC的存在,一方面直接影响整个编码蛋白质的溶解性及复合物的稳定性,另一方面则通过介导脱羧酶高级聚合状态的形成,决定着酶的催化活性。4-hydroxyphenylacetate decarboxylase (HPA) is a kind of glycyl radical enzymes (GREs), which catalyze the formation of p-cresol or skatole. It is characterized by a small subunit (HpdC), and shows unique properties that have not been observed in other GREs. Thus HPA decarboxylase is considered as a new kind of GRE. The existing researches show the importance of HpdC in the decarboxylase family, but its importance hasn't been experimentally verified. To elucidate the functions of HpdC, a series of over-expression plasmids for the hybrid decarboxylases were established and the corresponding encoded proteins were purified and analyzed. The final physio-chemical analysis and the enzyme activity test results prove that the small subunit is directly involved in the regulation of the enzymes' oligomeric state and activity.
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