Zhang Wanming, Lei Xin Gen
Department of Animal Science, Cornell University, 252 Morrison Hall, Ithaca, NY 14853, USA.
Appl Microbiol Biotechnol. 2008 Jan;77(5):1033-40. doi: 10.1007/s00253-007-1239-7. Epub 2007 Oct 30.
Aspergillus niger phytase (PhyA) has been used as a feed supplement to reduce manure phosphorus excretion of swine and poultry but lacks sufficient thermostability for feed pelleting and appropriate pH-activity profile for phytate hydrolysis in the stomach of animals. Previously, a thermostable mutant PhyA18 and two pH-activity profile-improved mutants E228K and K300E were developed. In this study, the mutations were combined to determine if both improvements were cumulative. Four substitutions (S149P, F131L, K112R, and K195R) identified from random mutagenesis were added sequentially to the combined mutants to further improve their thermostability. Mutant E228K shifted the optimum pH of the parent one from 5.5 to 4.0 and increased (P < 0.05) its specific activity at pH 3.5, whereas mutant K300E eliminated the activity dip at pH 3.5 shown in the wild type. Mutant S149P further improved thermostability over PhyA18. Our results illustrate the feasibility and structural basis to improve thermostability and pH-activity profile of PhyA phytase by assembling mutations derived from rational design and random mutagenesis.
黑曲霉植酸酶(PhyA)已被用作饲料添加剂以减少猪和家禽粪便中的磷排泄,但缺乏足够的热稳定性用于饲料制粒,且在动物胃中进行植酸水解时缺乏合适的pH活性曲线。此前,已开发出一种热稳定突变体PhyA18以及两种pH活性曲线得到改善的突变体E228K和K300E。在本研究中,将这些突变进行组合以确定两种改善是否具有累积性。从随机诱变中鉴定出的四个取代(S149P、F131L、K112R和K195R)被依次添加到组合突变体中,以进一步提高其热稳定性。突变体E228K将亲本的最适pH从5.5移至4.0,并在pH 3.5时提高了(P < 0.05)其比活性,而突变体K300E消除了野生型在pH 3.5时出现的活性下降。突变体S149P比PhyA18具有更高的热稳定性。我们的结果说明了通过组合源自理性设计和随机诱变的突变来改善PhyA植酸酶热稳定性和pH活性曲线的可行性及结构基础。