Bayly R C, Chapman P J, Dagley S, Di Berardino D
J Bacteriol. 1980 Jul;143(1):70-7. doi: 10.1128/jb.143.1.70-77.1980.
Hydrolysis of the gentisate ring-cleavage product, maleylpyruvate (cis-2,4-diketohept-5-enedioic acid), was shown to be catalyzed by an enzyme, maleylpyruvate hydrolase 11, in Pseudomonas alcaligenes (P25X1) after growth with 3-hydroxybenzoate. This activity was separated from fumarylpyruvate hydrolase activity during the course of its purification which accomplished an approximately 50-fold increase in specific activity. An apparent molecular weight of 77,000 was assigned on the basis of Sephadex G-200 chromatography. Despite the presence of up to three similarly migrating bands of protein on polyacrylamide-gel electrophoresis of the purified enzyme, at least two of these bands possessed maleylpyruvate hydrolase activity. Electrophoresis on sodium dodecyl sulfate-polyacrylamide before and after reduction with mercaptoethanol gave a principal band of molecular weight of 33,000 (and a minor band of molecular weight 50,000). A number of substituted maleylpyruvates also served as substrates for maleylpyruvate hydrolase 11, but maleylacetoacetate and fumarylpyruvate were not attacked. Fumarylpyruvate hydrolase was purified approximately 40-fold to give a single band on polyacrylamide gels and with an apparent molecular weight of 73,000 by Sephadex G-200 chromatography. Upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis before or after reduction with mercaptoethanol, a subunit molecular weight of 25,000 was obtained. Neither maleylpyruvate nor fumarylacetoacetate served as substrates for fumarylpyruvate hydrolase. The activities of both maleyl- and fumarylpyruvate hydrolases were stimulated by Mn(2+) ions. Reasons are discussed for the presence of both enzyme activities, one of which appears to be redundant.
在以3-羟基苯甲酸生长后的产碱假单胞菌(P25X1)中,龙胆酸盐环裂解产物马来酰丙酮酸(顺式-2,4-二酮庚-5-烯二酸)的水解被证明是由一种酶——马来酰丙酮酸水解酶11催化的。在纯化过程中,这种活性与富马酰丙酮酸水解酶活性分离,纯化后比活性提高了约50倍。根据葡聚糖G-200色谱法,其表观分子量为77,000。尽管纯化后的酶在聚丙烯酰胺凝胶电泳上有多达三条迁移率相似的蛋白条带,但其中至少两条带具有马来酰丙酮酸水解酶活性。用巯基乙醇还原前后在十二烷基硫酸钠-聚丙烯酰胺上进行电泳,得到一条分子量为33,000的主要条带(和一条分子量为50,000的次要条带)。许多取代的马来酰丙酮酸也可作为马来酰丙酮酸水解酶11的底物,但马来酰乙酰乙酸和富马酰丙酮酸不被作用。富马酰丙酮酸水解酶被纯化了约40倍,在聚丙烯酰胺凝胶上呈现单一条带,通过葡聚糖G-200色谱法测得其表观分子量为73,000。在用巯基乙醇还原前后进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳时,得到亚基分子量为25,000。马来酰丙酮酸和富马酰乙酰乙酸都不能作为富马酰丙酮酸水解酶的底物。Mn(2+)离子可刺激马来酰和富马酰丙酮酸水解酶的活性。文中讨论了两种酶活性同时存在的原因,其中一种似乎是多余的。