首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Comparison of the Thermostability Properties of Three Acid Phosphatases from Molds: Aspergillus fumigatus Phytase A. niger Phytase and A. niger pH 2.5 Acid Phosphatase
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Comparison of the Thermostability Properties of Three Acid Phosphatases from Molds: Aspergillus fumigatus Phytase A. niger Phytase and A. niger pH 2.5 Acid Phosphatase

机译:霉菌中三种酸性磷酸酶的热稳定性能的比较:烟曲霉植酸酶黑曲霉植酸酶和黑曲霉pH 2.5酸性磷酸酶

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摘要

Enzymes that are used as animal feed supplements should be able to withstand temperatures of 60 to 90°C, which may be reached during the feed pelleting process. The thermostability properties of three histidine acid phosphatases, Aspergillus fumigatus phytase, Aspergillus niger phytase, and A. niger optimum pH 2.5 acid phosphatase, were investigated by measuring circular dichroism, fluorescence, and enzymatic activity. The phytases of A. fumigatus and A. niger were both denatured at temperatures between 50 and 70°C. After heat denaturation at temperatures up to 90°C, A. fumigatus phytase refolded completely into a nativelike, fully active conformation, while in the case of A. niger phytase exposure to 55 to 90°C was associated with an irreversible conformational change and with losses in enzymatic activity of 70 to 80%. In contrast to these two phytases, A. niger pH 2.5 acid phosphatase displayed considerably higher thermostability; denaturation, conformational changes, and irreversible inactivation were observed only at temperatures of ≥80°C. In feed pelleting experiments performed at 75°C, the recoveries of the enzymatic activities of the three acid phosphatases were similar (63 to 73%). At 85°C, however, the recovery of enzymatic activity was considerably higher for A. fumigatus phytase (51%) than for A. niger phytase (31%) or pH 2.5 acid phosphatase (14%). These findings confirm that A. niger pH 2.5 acid phosphatase is irreversibly inactivated at temperatures above 80°C and that the capacity of A. fumigatus phytase to refold properly after heat denaturation may favorably affect its pelleting stability.
机译:用作动物饲料补充剂的酶应能够承受60至90°C的温度,这在饲料制粒过程中可能会达到。通过测量圆二色性,荧光和酶活性,研究了三种组氨酸酸性磷酸酶,烟曲霉植酸酶,黑曲霉植酸酶和黑曲霉最佳pH 2.5酸性磷酸酶的热稳定性。烟曲霉和黑曲霉的植酸酶均在50至70°C的温度下变性。在高达90°C的温度下热变性后,烟曲霉植酸酶完全重折叠成天然的,完全活跃的构象,而黑曲霉植酸酶暴露于55至90°C与不可逆的构象变化以及酶活性损失为70%至80%。与这两种肌醇六磷酸酶相反,黑曲霉pH 2.5酸性磷酸酶显示出相当高的热稳定性。仅在≥80°C的温度下观察到变性,构象变化和不可逆的灭活。在75°C下进行的饲料制粒实验中,三种酸性磷酸酶的酶活性回收率相似(63%至73%)。但是,在85°C下,烟曲霉植酸酶的酶活性恢复(51%)比黑曲霉植酸酶(31%)或pH 2.5酸性磷酸酶(14%)要高得多。这些发现证实,黑曲霉pH 2.5酸性磷酸酶在80℃以上的温度下不可逆地失活,并且烟曲霉植酸酶在热变性后正确重折叠的能力可能有利地影响其造粒稳定性。

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