Park Tak-Hyun, Choi Ki-Won, Park Cheon-Seok, Lee Soo-Bok, Kang Ho-Young, Shon Kwang-Jae, Park Jang-Su, Cha Jaeho
Department of Microbiology, College of Natural Sciences, Pusan National University, Jangjeon Dong, Kumjeong Ku, Busan 609-735, South Korea.
Appl Microbiol Biotechnol. 2005 Dec;69(4):411-22. doi: 10.1007/s00253-005-0055-1. Epub 2005 Aug 5.
The gene encoding beta-glucosidase of the marine hyperthermophilic eubacterium Thermotoga neapolitana (bglA) was subcloned and expressed in Escherichia coli. The recombinant BglA (rBglA) was efficiently purified by heat treatment at 75 degrees C, and a Ni-NTA affinity chromatography and its molecular mass were determined to be 56.2 kDa by mass spectrometry (MS). At 100 degrees C, the enzyme showed more than 94% of its optimal activity. The half-life of the enzyme was 3.6 h and 12 min at 100 and 105 degrees C, respectively. rBglA was active toward artificial (p-nitrophenyl beta-D: -glucoside) and natural substrates (cellobiose and lactose). The enzyme also exhibited activity with positional isomers of cellobiose: sophorose, laminaribiose, and gentiobiose. Kinetic studies of the enzyme revealed that the enzyme showed biphasic behavior with p-nitrophenyl beta-D: -glucoside as the substrate. Whereas metal ions did not show any significant effect on its activity, dithiothreitol and beta-mercaptoethanol markedly increased enzymatic activity. When arbutin and cellobiose were used as an acceptor and a donor, respectively, three distinct intermolecular transfer products were found by thin-layer chromatography and recycling preparative high-performance liquid chromatography. Structural analysis of three arbutin transfer products by MS and nuclear magnetic resonance indicated that glucose from cellobiose was transferred to the C-3, C-4, and C-6 in the glucose unit of acceptor, respectively.
对嗜热栖热菌(Thermotoga neapolitana)的β-葡萄糖苷酶编码基因(bglA)进行亚克隆,并在大肠杆菌中表达。重组BglA(rBglA)通过75℃热处理、镍-次氮基三乙酸亲和层析进行有效纯化,通过质谱(MS)测定其分子量为56.2 kDa。在100℃时,该酶表现出超过其最佳活性的94%。该酶在100℃和105℃下的半衰期分别为3.6小时和12分钟。rBglA对人工底物(对硝基苯基β-D-葡萄糖苷)和天然底物(纤维二糖和乳糖)具有活性。该酶对纤维二糖的位置异构体槐糖、昆布二糖和龙胆二糖也表现出活性。对该酶的动力学研究表明,以对硝基苯基β-D-葡萄糖苷为底物时,该酶表现出双相行为。金属离子对其活性没有显著影响,而二硫苏糖醇和β-巯基乙醇显著提高了酶活性。当分别以熊果苷和纤维二糖作为受体和供体时,通过薄层色谱和循环制备高效液相色谱发现了三种不同的分子间转移产物。通过质谱和核磁共振对三种熊果苷转移产物进行结构分析表明,纤维二糖中的葡萄糖分别转移到受体葡萄糖单元的C-3、C-4和C-6位。