Sao Carlos Institute of Physics (IFSC), University of Sao Paulo (USP), Avenida João Dagnone, no 1100, Jardim Santa Angelina, São Carlos, SP, 13563-120, Brazil.
Mackenzie Presbyterian University, Campinas, SP, Brazil.
Amino Acids. 2019 Apr;51(4):599-610. doi: 10.1007/s00726-018-02690-2. Epub 2019 Jan 23.
Knowing the key features of the structure and the biochemistry of proteins is crucial to improving enzymes of industrial interest like β-fructofuranosidase. Gene sacA from Bacillus licheniformis ATCC 14580 codifies a sucrose-6-phosphate hydrolase, a β-fructofuranosidase (E.C. 3.1.2.26, protein BlsacA), which has no crystallographic structure available. In this study, we report the results from numerous biochemical and biophysical techniques applied to the investigation of BlsacA in solution. BlsacA was successfully expressed in E. coli in soluble form and purified using affinity and size-exclusion chromatographies. Results showed that the optimum activity of BlsacA occurred at 30 °C around neutrality (pH 6.0-7.5) with a tendency to alkalinity. Circular dichroism spectrum confirmed that BlsacA contains elements of a β-sheet secondary structure at the optimum pH range and the maintenance of these elements is related to BlsacA enzymatic stability. Dynamic light scattering and small-angle X-ray scattering measurements showed that BlsacA forms stable and elongated homodimers which displays negligible flexibility in solution at optimum pH range. The BlsacA homodimeric nature is strictly related to its optimum activity and is responsible for the generation of biphasic curves during differential scanning fluorimetry analyses. The homodimer is formed through the contact of the N-terminal β-propeller domain of each BlsacA unit. The results presented here resemble the key importance of the homodimeric form of BlsacA for the enzyme stability and the optimum enzymatic activity.
了解蛋白质结构和生物化学的关键特征对于提高具有工业应用价值的酶(如β-呋喃果糖苷酶)至关重要。来自地衣芽孢杆菌 ATCC 14580 的 sacA 基因编码一种蔗糖-6-磷酸水解酶,即β-呋喃果糖苷酶(EC 3.1.2.26,蛋白 BlsacA),但目前尚无其晶体结构。在本研究中,我们报告了应用于溶液中 BlsacA 研究的多种生化和生物物理技术的结果。BlsacA 在大肠杆菌中以可溶性形式成功表达,并通过亲和层析和凝胶过滤层析进行纯化。结果表明,BlsacA 的最佳活性出现在 30°C 左右的中性(pH 6.0-7.5)范围内,且具有向碱性的趋势。圆二色性光谱证实,BlsacA 在最佳 pH 范围内含有β-折叠二级结构的元素,这些元素的维持与 BlsacA 酶的稳定性有关。动态光散射和小角 X 射线散射测量表明,BlsacA 形成稳定且拉长的同源二聚体,在最佳 pH 范围内,其在溶液中几乎没有柔韧性。BlsacA 同源二聚体的性质与它的最佳活性严格相关,并且负责在差示扫描荧光法分析中产生两相曲线。同源二聚体是通过每个 BlsacA 单元的 N 端β-推进器结构域的接触形成的。这些结果表明,BlsacA 同源二聚体形式对酶的稳定性和最佳酶活性具有重要意义。