Bertoldo C, Duffner F, Jorgensen P L, Antranikian G
Department of Technical Microbiology, Institute of Biotechnology, Technical University Hamburg-Harburg, 21071 Hamburg, Germany.
Appl Environ Microbiol. 1999 May;65(5):2084-91. doi: 10.1128/AEM.65.5.2084-2091.1999.
The gene encoding the type I pullulanase from the extremely thermophilic anaerobic bacterium Fervidobacterium pennavorans Ven5 was cloned and sequenced in Escherichia coli. The pulA gene from F. pennavorans Ven5 had 50.1% pairwise amino acid identity with pulA from the anaerobic hyperthermophile Thermotoga maritima and contained the four regions conserved among all amylolytic enzymes. The pullulanase gene (pulA) encodes a protein of 849 amino acids with a 28-residue signal peptide. The pulA gene was subcloned without its signal sequence and overexpressed in E. coli under the control of the trc promoter. This clone, E. coli FD748, produced two proteins (93 and 83 kDa) with pullulanase activity. A second start site, identified 118 amino acids downstream from the ATG start site, with a Shine-Dalgarno-like sequence (GGAGG) and TTG translation initiation codon was mutated to produce only the 93-kDa protein. The recombinant purified pullulanases (rPulAs) were optimally active at pH 6 and 80 degrees C and had a half-life of 2 h at 80 degrees C. The rPulAs hydrolyzed alpha-1,6 glycosidic linkages of pullulan, starch, amylopectin, glycogen, alpha-beta-limited dextrin. Interestingly, amylose, which contains only alpha-1,4 glycosidic linkages, was not hydrolyzed by rPulAs. According to these results, the enzyme is classified as a debranching enzyme, pullulanase type I. The extraordinary high substrate specificity of rPulA together with its thermal stability makes this enzyme a good candidate for biotechnological applications in the starch-processing industry.
编码嗜热厌氧菌嗜热栖热放线菌Ven5中I型支链淀粉酶的基因在大肠杆菌中被克隆并测序。嗜热栖热放线菌Ven5的pulA基因与厌氧嗜热菌嗜热栖热放线菌的pulA基因具有50.1%的氨基酸序列一致性,并且包含所有淀粉分解酶中保守的四个区域。支链淀粉酶基因(pulA)编码一个含有28个氨基酸信号肽的849个氨基酸的蛋白质。pulA基因在没有信号序列的情况下被亚克隆,并在trc启动子的控制下在大肠杆菌中过表达。这个克隆株,大肠杆菌FD748,产生了两种具有支链淀粉酶活性的蛋白质(93 kDa和83 kDa)。在ATG起始位点下游118个氨基酸处鉴定出的第二个起始位点,具有类似Shine-Dalgarno序列(GGAGG)和TTG翻译起始密码子,将其突变以仅产生93 kDa的蛋白质。重组纯化的支链淀粉酶(rPulAs)在pH 6和80℃时活性最佳,在80℃下的半衰期为2小时。rPulAs水解支链淀粉、淀粉、支链淀粉、糖原、α-β-极限糊精的α-1,6糖苷键。有趣的是,只含有α-1,4糖苷键的直链淀粉不被rPulAs水解。根据这些结果,该酶被归类为脱支酶,I型支链淀粉酶。rPulA极高的底物特异性及其热稳定性使其成为淀粉加工工业生物技术应用的良好候选者。