磷酸盐
磷酸酶
酸性磷酸酶
酶
生物化学
钨酸盐
哈茨木霉
基质(水族馆)
活动站点
水解
化学
二价
生物
无机化学
植物
有机化学
生物病虫害防治
生态学
作者
Amanda Souza,Vanessa Oliveira Leitão,Marcelo Henrique Soller Ramada,Azadeh Mehdad,Raphaela de Castro Georg,Cirano José Ulhoa,Sonia Maria de Freitas
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2016-03-03
卷期号:11 (3): e0150455-e0150455
被引量:9
标识
DOI:10.1371/journal.pone.0150455
摘要
Acid phosphatases (ACPases) are produced by a variety of fungi and have gained attention due their biotechnological potential in industrial, diagnosis and bioremediation processes. These enzymes play a specific role in scavenging, mobilization and acquisition of phosphate, enhancing soil fertility and plant growth. In this study, a new ACPase from Trichoderma harzianum, named ACPase II, was purified and characterized as a glycoprotein belonging to the acid phosphatase family. ACPase II presents an optimum pH and temperature of 3.8 and 65°C, respectively, and is stable at 55°C for 120 min, retaining 60% of its activity. The enzyme did not require metal divalent ions, but was inhibited by inorganic phosphate and tungstate. Affinity for several phosphate substrates was observed, including phytate, which is the major component of phosphorus in plant foods. The inhibition of ACPase II by tungstate and phosphate at different pH values is consistent with the inability of the substrate to occupy its active site due to electrostatic contacts that promote conformational changes, as indicated by fluorescence spectroscopy. A higher affinity for tungstate rather than phosphate at pH 4.0was observed, in accordance with its highest inhibitory effect. Results indicate considerable biotechnological potential of the ACPase II in soil environments.
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