Larentis Ariane Leites, Nicolau Júlia Fabiana Monteiro Quintal, Esteves Gabriela dos Santos, Vareschini Daniel Tait, de Almeida Fernanda Vicente Ribeiro, dos Reis Mitermayer Galvão, Galler Ricardo, Medeiros Marco Alberto
Fiocruz, Bio-Manguinhos, Vice Directory of Technological Development, Laboratory of Recombinant Technologies (LATER), Av, Brasil 4365, Manguinhos, Rio de Janeiro, RJ 21,040-360, Brazil.
BMC Res Notes. 2014 Sep 25;7:671. doi: 10.1186/1756-0500-7-671.
Leptospirosis is a zoonose that is increasingly endemic in built-up areas, especially where there are communities living in precarious housing with poor or non-existent sanitation infrastructure. Leptospirosis can kill, for its symptoms are easily confused with those of other diseases. As such, a rapid diagnosis is required so it can be treated effectively. A test for leptospirosis diagnosis using Leptospira Immunoglobulin-like (Lig) proteins is currently at final validation at Fiocruz.
In this work, the process for expression of LigB (131-645aa) in E. coli BL21 (DE3)Star™/pAE was evaluated. No significant difference was found for the experiments at two different pre-induction temperatures (28 °C and 37 °C). Then, the strain was cultivated at 37 °C until IPTG addition, followed by induction at 28°C, thereby reducing the overall process time. Under this condition, expression was assessed using central composite design for two variables: cell growth at which LigB (131-645aa) was induced (absorbance at 600 nm between 0.75 and 2.0) and inducer concentration (0.1 mM to 1 mM IPTG). Both variables influenced cell growth and protein expression. Induction at the final exponential growth phase in shaking flasks with Abs(ind) = 2.0 yielded higher cell concentrations and LigB (131-645aa) productivities. IPTG concentration had a negative effect and could be ten-fold lower than the concentration commonly used in molecular biology (1 mM), while keeping expression at similar levels and inducing less damage to cell growth. The expression of LigB (131-645aa) was associated with cell growth. The induction at the end of the exponential phase using 0.1 mM IPTG at 28 °C for 4 h was also performed in microbioreactors, reaching higher cell densities and 970 mg/L protein. LigB (131-645aa) was purified by nickel affinity chromatography with 91% homogeneity.
It was possible to assess the effects and interactions of the induction variables on the expression of soluble LigB (131-645aa) using experimental design, with a view to improving process productivity and reducing the production costs of a rapid test for leptospirosis diagnosis.
钩端螺旋体病是一种人畜共患病,在建成区的流行程度日益增加,尤其是在那些居住在卫生基础设施差或根本没有卫生设施的不稳定住房中的社区。钩端螺旋体病可能致命,因为其症状容易与其他疾病的症状混淆。因此,需要进行快速诊断以便有效治疗。一种使用钩端螺旋体免疫球蛋白样(Lig)蛋白进行钩端螺旋体病诊断的检测方法目前正在菲奥克鲁兹进行最终验证。
在这项工作中,评估了LigB(131 - 645aa)在大肠杆菌BL21 (DE3)Star™/pAE中的表达过程。在两个不同的诱导前温度(28°C和37°C)下进行的实验未发现显著差异。然后,该菌株在37°C下培养直至添加异丙基-β-D-硫代半乳糖苷(IPTG),随后在28°C下诱导,从而缩短了整个过程时间。在此条件下,使用中心复合设计对两个变量进行表达评估:诱导LigB(131 - 645aa)时的细胞生长情况(600nm处的吸光度介于0.75和2.0之间)和诱导剂浓度(0.1mM至1mM IPTG)。这两个变量均影响细胞生长和蛋白质表达。在摇瓶中于最终指数生长期且Abs(ind)=2.0时进行诱导,可产生更高的细胞浓度和LigB(131 - 645aa)产量。IPTG浓度具有负面影响,其浓度可比分子生物学中常用的浓度(1mM)低十倍,同时保持表达水平相似且对细胞生长的损伤较小。LigB(131 - 645aa)的表达与细胞生长相关。在微生物反应器中也于28°C下使用0.1mM IPTG在指数期结束时诱导4小时,达到了更高的细胞密度和970mg/L的蛋白质。LigB(131 - 645aa)通过镍亲和层析纯化,纯度为91%。
利用实验设计可以评估诱导变量对可溶性LigB(131 - 645aa)表达的影响和相互作用,以提高工艺生产力并降低钩端螺旋体病诊断快速检测的生产成本。