Xiong Ai-Sheng, Peng Ri-He, Zhuang Jing, Liu Jin-Ge, Gao Feng, Xu Fang, Cai Bin, Yao Quan-Hong
Biotechnology Research Institute of Shanghai Academy of Agricultural Sciences, 2901 Beidi Road, Shanghai 201106, China.
Biol Chem. 2007 Dec;388(12):1291-300. doi: 10.1515/BC.2007.153.
Directed evolution in vitro is a powerful molecular tool for the creation of new biological phenotypes. It is unclear whether it is more efficient to mutate an enzyme randomly or to mutate just the active sites or key sites. In this study, the strategy of a semi-rational design of directed evolution combined with whole sequence and sites was developed. The 1553 bp gene encoding the thermostable beta-galactosidase of Pyrococcus woesei was chemically synthesized and optimized for G+C content and mRNA secondary structures. The synthesized gene product was used as a template or as a wild-type control. On the basis of the first round of DNA shuffling, library construction and screening, one mutant of YH6754 was isolated with higher activity. Eight potential key sites were deduced from the sequence of the shuffled gene, and 16 degenerate oligonucleotides were designed according to those eight amino acids. Two variants of YG6765 and YG8252 were screened in the second part of DNA shuffling, library construction and screening. For comparison, one mutant of YH8757 was screened through the same routine rounds of directed evolution with YH6754 as template. The purified beta-galactosidase from YH8757 exhibited a lower specific activity at 25 degrees C than those purified from mutated YG6755 and YG8252.
体外定向进化是创造新生物表型的一种强大的分子工具。尚不清楚随机突变一种酶还是仅突变活性位点或关键位点效率更高。在本研究中,开发了一种结合全序列和位点的定向进化半理性设计策略。化学合成了编码沃氏火球菌耐热β-半乳糖苷酶的1553 bp基因,并针对G+C含量和mRNA二级结构进行了优化。合成的基因产物用作模板或野生型对照。基于第一轮DNA改组、文库构建和筛选,分离出一个活性更高的YH6754突变体。从改组基因的序列中推导了8个潜在的关键位点,并根据这8个氨基酸设计了16条简并寡核苷酸。在DNA改组、文库构建和筛选的第二部分中筛选出YG6765和YG8252的两个变体。为作比较,以YH6754为模板,通过相同常规轮次的定向进化筛选出一个YH8757突变体。与从突变的YG6755和YG8252中纯化的β-半乳糖苷酶相比,从YH8757中纯化的β-半乳糖苷酶在25℃时的比活性较低。