[Metabolism of phosphate-limited Streptomyces cultures. I. Purification and characterization of alkaline phosphatase produced by Streptomyces hygroscopicus].

J H Ozegowski, P J Müller
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Abstract

Alkaline phosphatase from Streptomyces hygroscopicus strain JA 5999-R 27-158 was purified and characterized. The enzyme was found in the culture filtrate and in the mycelium. The phosphatase was extracted from the mycelium and purified by adsorption to DEAE-cellulose. To separate impurities, the crude enzyme solution was heated and the phosphatase purified by chromatography through CM-Sepharose and Sephadex G 100. The specific activity of the resulting enzyme was 1000 microMol/min/mg at 25 degrees C. The molecular weight determined by SDS gel electrophoresis was found to be 56 000. The Michaelis-Menten constant determined with p-nitrophenylphosphate as substrate was Km = 1.25 X 10(-3) M. Phosphatase activity was dependent on the presence of Ca++ and the maximum activity of enzyme with p-nitrophenylphosphate as substrate was found at pH 9.2. The pI as detected by isoelectric focusing was at pH 5.6. Temperatures from 30 degrees to 75 degrees C did not affect the stability of the enzyme. The alkaline phosphatase exhibited high substrate specificity; of various phosphomonoesters tested, only p-nitrophenylphosphate, methylumbelliferyl-phosphate, phosphoenolpyruvate, ADP, ATP and tyrosine-O-phosphate was hydrolysed. The activity was inhibited by NAF, Na2P2O7 and EDTA. The involvement of the alkaline phosphatase in the regulation of secondary metabolism was discussed.

[磷酸盐限制链霉菌培养物的代谢]。1 .吸湿链霉菌碱性磷酸酶的纯化与鉴定[j]。
对吸湿链霉菌JA 5999- r27 -158株碱性磷酸酶进行了纯化和鉴定。该酶在培养滤液和菌丝中均有发现。从菌丝体中提取磷酸酶,吸附到deae -纤维素中纯化。为了分离杂质,对粗酶溶液进行加热,通过CM-Sepharose和Sephadex g100层析纯化磷酸酶。所得酶在25℃下的比活性为1000 microMol/min/mg, SDS凝胶电泳测定的分子量为56000。以对硝基苯基磷酸为底物测定的Michaelis-Menten常数为Km = 1.25 X 10(-3) m,磷酸酶活性依赖于Ca++的存在,以对硝基苯基磷酸为底物测定的酶活性在pH 9.2时达到最大值。等电聚焦测得pI为pH 5.6。温度从30°C到75°C不会影响酶的稳定性。碱性磷酸酶表现出高底物特异性;在所测的各种磷酸单酯中,只有对硝基苯基磷酸、甲基伞草酰磷酸、磷酸烯醇丙酮酸、ADP、ATP和酪氨酸-磷酸被水解。NAF、Na2P2O7和EDTA对其活性有抑制作用。讨论了碱性磷酸酶在次生代谢调控中的作用。
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