首页> 外文期刊>Journal of biochemistry and molecular biology >Isolation, Characterization, and Molecular Cloning of the cDNA Encoding a Novel Phytase from Aspergillus niger 113 and High Expression in Pichia pastoris
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Isolation, Characterization, and Molecular Cloning of the cDNA Encoding a Novel Phytase from Aspergillus niger 113 and High Expression in Pichia pastoris

机译:黑曲霉113新型植酸酶编码cDNA的分离,鉴定及分子克隆及在毕赤酵母中的高表达

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Phytases catalyze the release of phosphate from phytic acid. Phytase-producing microorganisms were selected by culturing the soil extracts on agar plates containing phytic acid. Two hundred colonies that exhibited potential phytase activity were selected for further study. The colony showing the highest phytase activity was identified as Aspergillus niger and designated strain 113. The phytase gene from A. niger 113 (phyI1) was isolated, cloned, and characterized. The nucleotide and deduced amino acid sequence identity between phyI1 and phyA from NRRL3135 were 90% and 98%, respectively. The identity between phyI1 and phyA from SK-57 was 89% and 96%. A synthetic phytase gene, phyI1s, was synthesized by successive PCR and transformed into the yeast expression vector carrying a signal peptide that was designed and synthesized using P. pastoris biased codon. For the phytase expression and secretion, the construct was integrated into the genome of P. pastoris by homologous recombination. Over-expressing strains were selected and fermented. It was discovered that ~4.2 g phytase could be purified from one liter of culture fluid. The activity of the resulting phytase was 9.5 U/mg. Due to the heavy glycosylation, the expressed phytase varied in size (120, 95, 85, and 64 kDa), but could be deglycosylated to a homogeneous 64 kDa species. An enzymatic kinetics analysis showed that the phytase had two pH optima (pH 2.0 and pH 5.0) and an optimum temperature of 60 ℃.
机译:植酸酶催化植酸中磷酸盐的释放。通过在含有植酸的琼脂平板上培养土壤提取物来选择产生植酸酶的微生物。选择了具有潜在植酸酶活性的200个菌落进行进一步研究。表现出最高肌醇六磷酸酶活性的菌落被鉴定为黑曲霉,并命名为菌株113。来自黑曲霉113(phyI1)的肌醇六磷酸酶基因被分离,克隆和鉴定。 NRRL3135的phyI1和phyA之间的核苷酸和推导的氨基酸序列同一性分别为90%和98%。来自SK-57的phyI1与phyA的同一性分别为89%和96%。通过连续PCR合成了合成肌醇六磷酸酶基因phyI1s,并将其转化到带有信号肽的酵母表达载体中,该信号肽是使用巴斯德毕赤酵母偏爱密码子设计和合成的。为了植酸酶的表达和分泌,通过同源重组将构建体整合到巴斯德毕赤酵母的基因组中。选择过表达的菌株并发酵。发现从一公升的培养液中可以纯化出约4.2 g的植酸酶。所得植酸酶的活性为9.5U / mg。由于重糖基化作用,表达的植酸酶大小不同(120、95、85和64 kDa),但可以去糖基化为同质的64 kDa物种。酶动力学分析表明,植酸酶具有两个最适pH值(pH 2.0和pH 5.0),最适温度为60℃。

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