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首页> 外文期刊>Brazilian Archives of Biology and Technology >Control of Acid Phosphatases Expression from Aspergillus niger by Soil Characteristics
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Control of Acid Phosphatases Expression from Aspergillus niger by Soil Characteristics

机译:通过土壤特性控制黑曲霉酸性磷酸酶表达

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摘要

This work studied the acid phosphatase (APase) activity from culture medium (extracellular, eAPase) and mycelial extract (intracellular, iAPase) of Aspergillus niger F111. The influence of fungus growth and phosphate concentration of the media on the synthesis and secretion of phosphatase was demonstrated. The effects of pH, substrate concentration and inorganic and organic compounds added to the reaction mixture on APase activity were also studied. Both enzymes were repressed by high concentrations of phosphate. Overexpression of iAPase in relation to eAPase was detected; iAPase activity was 46.1 times higher than eAPase. The maximal activity of eAPase was after 24h of fungus growth and for iAPase was after 96h. Optimal pH and substrate concentrations were 4.5 and 8.0 mM, respectively. Michaelis-Menten constant (Km) for the hydrolysis of p-nitrophenyl phosphate was 0.57 mM with V-max = 14,285.71 U mg(-1) mycelium for the iAPase and 0.31 mM with V-max = 147.06 U mg(-1) mycelium for eAPase. Organic substances had little effect on acid phosphatases when compared with the salts. Both the APases were inhibited by 10 mM KH2PO4 and 5 mM (NH4)(2)MoO4; eAPase was also inhibited by 1 mM CoCl2.
机译:这项工作研究了黑曲霉F111的培养基(细胞外,eAPase)和菌丝体提取物(细胞内,iAPase)的酸性磷酸酶(APase)活性。证明了真菌的生长和培养基中磷酸盐浓度对磷酸酶合成和分泌的影响。还研究了pH,底物浓度以及添加到反应混合物中的无机和有机化合物对APase活性的影响。两种酶均被高浓度的磷酸盐抑制。检测到iAPase相对于eAPase的过表达; iAPase活性是eAPase的46.1倍。 eAPase的最大活性是在真菌生长24h之后,而iAPase的最大活性是在96h之后。最适pH和底物浓度分别为4.5和8.0 mM。对硝基苯基磷酸酯的水解米氏常数(Km)为iAPase的V-max = 14,285.71 U mg(-1)菌丝体为0.57 mM和V-max = 147.06 U mg(-1)菌丝体时为0.31 mM用于eAPase。与盐相比,有机物对酸性磷酸酶的影响很小。两种APase均被10 mM KH2PO4和5 mM(NH4)(2)MoO4抑制; eAPase也被1 mM CoCl2抑制。

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