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新型嗜酸植酸酶热稳定性的提高。

Improved Thermal Stability of a Novel Acidophilic Phytase.

机构信息

Institute of Biotechnology, CJ CheilJedang Co., Suwon 16495, Republic of Korea.

出版信息

J Microbiol Biotechnol. 2024 May 28;34(5):1119-1125. doi: 10.4014/jmb.2311.11044. Epub 2024 Apr 3.

Abstract

Phytase increases the availability of phosphate and trace elements by hydrolyzing the phosphomonoester bond in phytate present in animal feed. It is also an important enzyme from an environmental perspective because it not only promotes the growth of livestocks but also prevents phosphorus contamination released into the environment. Here we present a novel phytase derived from , TmPhy, which has distinctive structure and properties compared to other previously known phytases. TmPhy gene expressed in the system was confirmed to be 41 kDa in size and was used in purified form to evaluate optimal conditions for maximum activity. TmPhy has a dual optimum pH at pH3 and pH6.8 and exhibited the highest activity at 70°C. However, the heat tolerance of the wildtype was not satisfactory for feed application. Therefore, random mutation, disulfide bond introduction, and N-terminal mutation were performed to improve the thermostability of the TmPhy. Random mutation resulted in TmPhyM with about 45% improvement in stability at 60°C. Through further improvements, a total of three mutants were screened and their heat tolerance was evaluated. As a result, we obtained TmPhyMD1 with 46.5% residual activity, TmPhyMD2 with 74.1%, and TmPhyMD3 with 66.8% at 80°C heat treatment without significant loss of or with increased activity.

摘要

植酸酶通过水解动物饲料中植酸中的磷酸单酯键,提高磷酸盐和微量元素的生物利用率。从环境角度来看,它也是一种重要的酶,因为它不仅促进牲畜生长,还防止释放到环境中的磷污染。在这里,我们介绍了一种新型植酸酶,来自 ,TmPhy,与其他先前已知的植酸酶相比,它具有独特的结构和特性。在 系统中表达的 TmPhy 基因被证实大小为 41 kDa,并以纯形式用于评估最大活性的最佳条件。TmPhy 在 pH3 和 pH6.8 处具有双重最佳 pH 值,并在 70°C 时表现出最高活性。然而,野生型的耐热性不适合饲料应用。因此,进行了随机突变、二硫键引入和 N 端突变,以提高 TmPhy 的热稳定性。随机突变导致 TmPhyM 的稳定性提高了约 45%,在 60°C 时。通过进一步改进,共筛选出三个突变体,并对其耐热性进行了评估。结果,我们获得了 TmPhyMD1,在 80°C 热处理下残留活性为 46.5%,TmPhyMD2 为 74.1%,TmPhyMD3 为 66.8%,而活性没有明显损失或增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcdd/11180912/b2379f3e26e1/jmb-34-5-1119-f1.jpg

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