Hemici Ahmed, Benerbaiha Roumaila Sabrina, Bendjeddou Dalila
Department of Natural and Life Sciences, Faculty of SNV-STU, University 8 Mai 45, Guelma 24000, Algeria.
Department of Veterinary Sciences El Khroub, Faculty of Natural and Life Sciences, University Mentouri, Constantine 25000, Algeria.
J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Nov 15;1068-1069:268-276. doi: 10.1016/j.jchromb.2017.10.049. Epub 2017 Oct 28.
This study describes the purification and characterization of a stable protease activity isolated from Fasciola hepatica adult worms maintained in vitro by employing acetone precipitation (40-60%) followed by a gel filtration through Sephadex G-100 and DEAE- cellulose ion exchange column. Through this three-step purification, the enzyme was purified 11-fold with a specific activity of 1893.9U/mg and 31.5% recovery. After the final ultrafiltration step, the purification fold was increased up to 13.1 and the overall activity yield reached a rate of 18.8%. The MW of the purified protease was estimated by reducing SDS-PAGE to be 22kDa while the proteolytic activity detection was carried out by zymography on non-denaturing SDS-PAGE containing the casein as substrate. Using this substrate, the protease showed extreme proteolytic activity at pH 5.5 and temperature 35-40°C and was highly stable over a wide range of pH, from 5.0 to 10.0. In addition to its preference for the Z-Phe-Arg-AMC fluorogenic substrate resulting in maximum proteolytic activity (99.7%) at pH 7.0, the pure protease exhibited highest cleavage activity against hemoglobin and casein substrates at pH 5.5 (85.6% and 82.8%, respectively). The K values obtained for this protease were 5.4, 13, 160 and approximately 1000μM using respectively the fluorogenic substrate Z-Phe-Arg-AMC, hemoglobin, casein and albumin. The protease activity was completely inhibited either by E-64 inhibitor (5mM) or iodoacetamide (10mM), indicating its cysteine nature. The usefulness of the purified protease as an antigen was studied by immunoblotting. Thus, sera from sheep experimentally infected with F. hepatica recognized the protease band at 2 weeks post-infection (WPI) and strongly at 7 WPI. The early detection of antibodies anti- F. hepatica suggests the application of this molecule as a specific epitope for the serodiagnosis of fascioliasis disease.
本研究描述了从体外培养的肝片吸虫成虫中分离出的一种稳定蛋白酶活性的纯化及特性鉴定方法。采用丙酮沉淀(40%-60%),随后通过Sephadex G-100凝胶过滤和DEAE-纤维素离子交换柱进行三步纯化。通过这三步纯化,该酶的纯化倍数达到11倍,比活性为1893.9U/mg,回收率为31.5%。在最后的超滤步骤后,纯化倍数提高到13.1,总活性产率达到18.8%。通过还原SDS-PAGE估计纯化蛋白酶的分子量为22kDa,而蛋白水解活性检测是在以酪蛋白为底物的非变性SDS-PAGE上通过酶谱法进行的。使用该底物时,该蛋白酶在pH 5.5和温度35-40°C下表现出极高的蛋白水解活性,并且在5.0至10.0的广泛pH范围内高度稳定。除了对Z-Phe-Arg-AMC荧光底物有偏好,在pH 7.0时产生最大蛋白水解活性(99.7%)外,纯蛋白酶在pH 5.5时对血红蛋白和酪蛋白底物表现出最高的切割活性(分别为85.6%和82.8%)。使用荧光底物Z-Phe-Arg-AMC、血红蛋白、酪蛋白和白蛋白时,该蛋白酶获得的K值分别为5.4、13、160和约1000μM。蛋白酶活性被E-64抑制剂(5mM)或碘乙酰胺(10mM)完全抑制,表明其为半胱氨酸性质。通过免疫印迹研究了纯化蛋白酶作为抗原的用途。因此,来自实验感染肝片吸虫的绵羊的血清在感染后2周(WPI)识别出蛋白酶条带,在7 WPI时强烈识别。抗肝片吸虫抗体的早期检测表明该分子可作为肝片吸虫病血清诊断的特异性表位。