Ha Suk-Jin, Seo Dong-Ho, Jung Jong-Hyun, Cha Jaeho, Kim Tae-Jip, Kim Young-Wan, Park Cheon-Seok
Graduate School of Biotechnology and Institute of Life Science and Resources, Kyung Hee University, Yongin, Korea.
Biosci Biotechnol Biochem. 2009 Jul;73(7):1505-12. doi: 10.1271/bbb.80891. Epub 2009 Jul 7.
The presence of amylosucrase in 12 Alteromonas and Pseudoalteromonas strains was examined. Two Alteromonas species (Alteromonas addita KCTC 12195 and Alteromonas macleodii KCTC 2957) possessed genes that had high sequence homology to known amylosucrases. Genomic clones containing the ASase analogs were obtained from A. addita and A. macleodii, and the deduced amino acid sequences of the corresponding genes (aaas and amas, respectively) revealed that they were highly similar to the ASases of Neisseria polysaccharea, Deinococcus radiodurans, and Deinococcus geothermalis. Functional expression of amas in Escherichia coli was successful, and typical ASase activity was detected in purified recombinant AMAS, whereas the purified recombinant AAAS was nonfunctional. Although maximum total activity of AMAS was observed at 45 degrees C, the ratio of transglycosylation to total activity increased as the temperature decreased from 55 to 25 degrees C. These results imply that transglycosylation occurs preferentially at lower temperatures while hydrolysis is predominant at higher temperatures.
检测了12株交替单胞菌属和假交替单胞菌属菌株中淀粉蔗糖酶的存在情况。两种交替单胞菌(嗜盐交替单胞菌KCTC 12195和麦克劳德交替单胞菌KCTC 2957)拥有与已知淀粉蔗糖酶具有高度序列同源性的基因。从嗜盐交替单胞菌和麦克劳德交替单胞菌中获得了包含淀粉蔗糖酶类似物的基因组克隆,相应基因(分别为aaas和amas)推导的氨基酸序列显示,它们与多糖奈瑟菌、耐辐射球菌和嗜热栖热放线菌的淀粉蔗糖酶高度相似。amas在大肠杆菌中的功能表达成功,在纯化的重组AMAS中检测到典型的淀粉蔗糖酶活性,而纯化的重组AAAS无功能。尽管在45℃时观察到AMAS的最大总活性,但随着温度从55℃降至25℃,转糖基化与总活性的比率增加。这些结果表明,转糖基化在较低温度下优先发生,而水解在较高温度下占主导。