Mihara Yasuhiro, Ishikawa Kohki, Suzuki Ei-Ichiro, Asano Yasuhisa
Applied Microbiology Laboratory, Fermentation and Biotechnology Laboratories, Ajinomoto Co, Inc, Kaeasaki-shi, Japan.
Biosci Biotechnol Biochem. 2004 May;68(5):1046-50. doi: 10.1271/bbb.68.1046.
Escherichia blattae acid phosphatase/phosphotransferase (EB-AP/PTase) exhibits C-5'-position selective pyrophosphate-nucleoside phosphotransferase activity in addition to its intrinsic phosphatase. Improvement of its phosphotransferase activity was investigated by sequential site-directed mutagenesis. By comparing the primary structures of higher 5'-inosinic acid (5'-IMP) productivity and lower 5'-IMP productivity acid phosphatase/phosphotransferase, candidate residues of substitution were selected. Then a total of 11 amino acid substitutions were made with sequential substitutions. As the number of substituted amino acid residues increased, the 5'-IMP productivity of the mutant enzyme increased, and the activity of the 11 mutant phosphotransferases of EB-AP/PTase reached the same level as that of Morganella morganii AP/PTase. This result shows that Leu63, Ala65, Glu66, Asn69, Ser71, Asp116, Thr135, and Glu136, whose relevance was not directly established by structural analysis alone, also plays an important role in the phosphotransferase activity of EB-AP/PTase.
蜚蠊埃希氏菌酸性磷酸酶/磷酸转移酶(EB-AP/PTase)除了具有固有的磷酸酶活性外,还表现出C-5'-位选择性焦磷酸-核苷磷酸转移酶活性。通过连续定点诱变研究了其磷酸转移酶活性的改善情况。通过比较5'-肌苷酸(5'-IMP)生产率较高和较低的酸性磷酸酶/磷酸转移酶的一级结构,选择了替换的候选残基。然后进行了总共11次氨基酸替换的连续替换。随着替换氨基酸残基数量的增加,突变酶的5'-IMP生产率提高,EB-AP/PTase的11种突变磷酸转移酶的活性达到了摩根氏摩根菌AP/PTase的相同水平。这一结果表明,仅通过结构分析未直接确定其相关性的Leu63、Ala65、Glu66、Asn69、Ser71、Asp116、Thr135和Glu136,在EB-AP/PTase的磷酸转移酶活性中也起着重要作用。