Mehmood Muhammad A, Shahid Izzah, Hussain Khadim, Latif Farooq, Rajoka Muhammad I
National Institute for Biotechnology & Genetic Engineering, Faisalabad-38000, Pakistan.
Protein Pept Lett. 2014;21(12):1282-8.
Enzymes from thermophilic organisms are believed to be strong candidates for industrial applications due to their ability to withstand temperature-induced enzyme inactivation. The present study demonstrated molecular cloning, over-expression, purification and characterization of β-glucosidase from Thermotoga maritima. The bglA gene with a capacity to encode a 51 kDa enzyme was heterologously expressed in E. coli M15. The enzyme was produced @130 mgL(-1) in LB media and @440 mgL(-1) in Dubos salt medium accounting 40-47 % of total cellular soluble proteins when lactose was used as an inducer. The enzyme showed a peak activity between pH and temperature range of 5.0-7.0 and 80-100 °C, respectively. The activity was fairly stable up to 140 °C. The turnover rate (kcat) of the enzyme was 187.1±20 s(-1), whereas the Km and Vmax values were 0.56 mM and 238±2.4 IU mg(-1) protein, respectively. The enzyme was shown to have half-life of 136, 71 and 12.6 h at 80, 90 and 100 °C, respectively. Thermodynamics parameters including melting temperature (130 °C), activation energy for inactivation (36.92 kJmole(-1)), enthalpy (33.73 kJmole(-1)), Gibb's free energy (127.96 kJmole(-1)) and entropy (-246.46 Jmole(-1)K(-1)) have shown that the enzyme have enhanced hydrophobic interactions to prevent its thermal unfolding. These features endorse the industrial applications of the enzyme.
由于嗜热生物的酶具有耐受温度诱导的酶失活的能力,因此被认为是工业应用的有力候选者。本研究展示了来自海栖热袍菌的β-葡萄糖苷酶的分子克隆、过量表达、纯化及特性鉴定。编码51 kDa酶的bglA基因在大肠杆菌M15中进行了异源表达。当使用乳糖作为诱导剂时,该酶在LB培养基中的产量为130 mgL(-1),在杜氏盐培养基中的产量为440 mgL(-1),占总细胞可溶性蛋白的40 - 47%。该酶的活性峰值分别出现在pH值为5.0 - 7.0和温度为80 - 100 °C的范围内。其活性在高达140 °C时相当稳定。该酶的周转速率(kcat)为187.1±20 s(-1),而Km和Vmax值分别为0.56 mM和238±2.4 IU mg(-1)蛋白质。该酶在80、90和100 °C时的半衰期分别为136、71和12.6小时。包括解链温度(130 °C)、失活活化能(36.92 kJmole(-1))、焓(33.73 kJmole(-1))、吉布斯自由能(127.96 kJmole(-1))和熵(-246.46 Jmole(-1)K(-1))在内的热力学参数表明,该酶具有增强的疏水相互作用以防止其热解折叠。这些特性支持了该酶在工业上的应用。