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嗜热真菌嗜热栖热放线菌植酸酶基因的分子特征与表达

Molecular characterization and expression of a phytase gene from the thermophilic fungus Thermomyces lanuginosus.

作者信息

Berka R M, Rey M W, Brown K M, Byun T, Klotz A V

机构信息

Novo Nordisk Biotech, Davis, California 95616-4880, USA.

出版信息

Appl Environ Microbiol. 1998 Nov;64(11):4423-7. doi: 10.1128/AEM.64.11.4423-4427.1998.

Abstract

The phyA gene encoding an extracellular phytase from the thermophilic fungus Thermomyces lanuginosus was cloned and heterologously expressed, and the recombinant gene product was biochemically characterized. The phyA gene encodes a primary translation product (PhyA) of 475 amino acids (aa) which includes a putative signal peptide (23 aa) and propeptide (10 aa). The deduced amino acid sequence of PhyA has limited sequence identity (ca. 47%) with Aspergillus niger phytase. The phyA gene was inserted into an expression vector under transcriptional control of the Fusarium oxysporum trypsin gene promoter and used to transform a Fusarium venenatum recipient strain. The secreted recombinant phytase protein was enzymatically active between pHs 3 and 7.5, with a specific activity of 110 micromol of inorganic phosphate released per min per mg of protein at pH 6 and 37 degrees C. The Thermomyces phytase retained activity at assay temperatures up to 75 degrees C and demonstrated superior catalytic efficiency to any known fungal phytase at 65 degrees C (the temperature optimum). Comparison of this new Thermomyces catalyst with the well-known Aspergillus niger phytase reveals other favorable properties for the enzyme derived from the thermophilic gene donor, including catalytic activity over an expanded pH range.

摘要

编码嗜热真菌嗜热栖热菌胞外植酸酶的phyA基因被克隆并进行了异源表达,对重组基因产物进行了生化特性分析。phyA基因编码一个由475个氨基酸(aa)组成的初级翻译产物(PhyA),其中包括一个推定的信号肽(23 aa)和前肽(10 aa)。推导的PhyA氨基酸序列与黑曲霉植酸酶的序列同一性有限(约47%)。将phyA基因插入到受尖孢镰刀菌胰蛋白酶基因启动子转录控制的表达载体中,并用于转化尖孢镰刀菌受体菌株。分泌的重组植酸酶蛋白在pH 3至7.5之间具有酶活性,在pH 6和37℃时,比活性为每分钟每毫克蛋白释放110微摩尔无机磷酸盐。嗜热栖热菌植酸酶在高达75℃的测定温度下仍保持活性,并且在65℃(最适温度)时表现出优于任何已知真菌植酸酶的催化效率。将这种新的嗜热栖热菌催化剂与著名的黑曲霉植酸酶进行比较,发现来自嗜热基因供体的酶具有其他有利特性,包括在更宽的pH范围内具有催化活性。

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