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Trichoderma harzianum Produces a New Thermally Stable Acid Phosphatase with Potential for Biotechnological Application

机译:哈茨木霉产生一种新的热稳定酸性磷酸酶具有生物技术应用潜力

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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.
机译:酸性磷酸酶(ACPases)是由多种真菌产生的,由于它们在工业,诊断和生物修复过程中的生物技术潜力而受到关注。这些酶在清除,动员和获取磷酸盐,增强土壤肥力和植物生长中起特定作用。在这项研究中,纯化了来自哈茨木霉的一种新的ACPase,名为ACPase II,并被表征为一种糖蛋白,属于酸性磷酸酶家族。 ACPase II的最佳pH值和温度分别为3.8和65°C,并在55°C稳定120分钟,保留其60%的活性。该酶不需要金属二价离子,但被无机磷酸盐和钨酸盐抑制。观察到了对几种磷酸盐底物的亲和力,包括植酸,这是植物食品中磷的主要成分。钨酸盐和磷酸盐在不同pH值下对ACPase II的抑制作用与底物无法占据其活性位点有关,这是由于静电接触促进了构象变化,如荧光光谱所示。根据其最大的抑制作用,在pH 4.0时观察到对钨酸盐的亲和力高于对磷酸盐的亲和力。结果表明,ACPase II在土壤环境中具有巨大的生物技术潜力。

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