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改变黑曲霉PhyB的底物特异性位点可将最适pH值转变为pH 3.2。

Altering the substrate specificity site of Aspergillus niger PhyB shifts the pH optimum to pH 3.2.

作者信息

Weaver Jeremy D, Mullaney Edward J, Lei Xin Gen

机构信息

Department of Animal Science, Cornell University, Ithaca, NY 14853, USA.

出版信息

Appl Microbiol Biotechnol. 2007 Aug;76(1):117-22. doi: 10.1007/s00253-007-0975-z. Epub 2007 Apr 21.

Abstract

Phytases are of biotechnological importance as animal feed additives for their ability to catalyze the hydrolysis of phosphate from phytate for absorption by simple-stomached animals, and to reduce their fecal phosphorus excretion. Aspergillus niger PhyB has high catalytic activity at low pHs around 2.5, but has little activity at the commonly observed gastric pH of young animals (3.0-3.5). Our objective was to determine if the pH optima of PhyB could be broadened to a more characteristic pH range in the stomach of young animals through site-directed mutagenesis. We created two mutants, E272K and E272Q, each with a single amino acid substitution of the same residue in the substrate specificity site. Mutants were designed to replace an acidic amino acid, with either a neutral amino acid (E272Q) or basic amino acid (E272K), and were overexpressed in the yeast Pichia pastoris. While the wild-type (WT) pH optimum was 2.5, mutant E272K shifted to a new optimum of pH 3.2. E272K had a concomitant reduction in K (m) of 36-fold at pH 2.5 and 6-fold at pH 3.2 compared to the WT. Our results indicate that the pH optimum of PhyB can be altered to match the stomach pH, along with an improved substrate affinity.

摘要

植酸酶作为动物饲料添加剂具有重要的生物技术意义,因为它能够催化植酸盐中磷酸盐的水解,以便单胃动物吸收,并减少其粪便中的磷排泄。黑曲霉PhyB在2.5左右的低pH值下具有高催化活性,但在幼小动物常见的胃pH值(3.0 - 3.5)下活性较低。我们的目标是确定是否可以通过定点诱变将PhyB的最适pH值拓宽到幼小动物胃中更具特征性的pH范围。我们创建了两个突变体E272K和E272Q,每个突变体在底物特异性位点都有一个相同残基的单氨基酸替换。突变体设计为用中性氨基酸(E272Q)或碱性氨基酸(E272K)替换酸性氨基酸,并在毕赤酵母中过表达。虽然野生型(WT)的最适pH值为2.5,但突变体E272K的最适pH值转移到了3.2。与野生型相比,E272K在pH 2.5时的米氏常数(Km)降低了36倍,在pH 3.2时降低了6倍。我们的结果表明,PhyB的最适pH值可以改变以匹配胃pH值,同时底物亲和力也得到改善。

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