Semedo Magda C, Karmali Amin, Martins Sónia, Fonseca Luís
Chemical Engineering and Biotechnology Research Center and Departmental Area of Chemical Engineering of Instituto Superior De Engenharia De Lisboa, R. Conselheiro Emídio Navarro 1, 1959-007, Lisboa, Portugal.
Centre for the Research and Technology Agro-Environment and Biological Sciences, Universidade De Trás-os-Montes E Alto Douro, Quinta De Prados, Apartado 1013, 5001-801 Vila Real, Portugal.
Biotechnol Prog. 2016 Jan-Feb;32(1):116-25. doi: 10.1002/btpr.2196. Epub 2015 Dec 7.
β-D-glucans from mushroom strains play a major role as biological response modifiers in several clinical disorders. Therefore, a specific assay method is of critical importance to find useful and novel sources of β-d-glucans with anti-tumor activity. Hybridoma technology was used to raise monoclonal antibodies (Mabs) against extracellular β-d-glucans (EBG) from Pleurotus ostreatus. Two of these hybridoma clones (3F8_3H7 and 1E6_1E8_B3) secreting Mabs against EBG from P. ostreatus were selected and 3F8_3H7 was used to investigate if they are polyol-responsive Mabs (PR-Mabs) by using ELlSA-elution assay. This hybridoma cell line secreted Mab of IgM class, which was purified in a single step by gel filtration chromatography on Sephacryl S-300HR, which revealed a protein band on native PAGE with Mr of 917 kDa. Specificity studies of Mab 3F8_3H7 revealed that it recognized a common epitope on several β-d-glucans from different basidiomycete strains as determined by indirect ELlSA and Western blotting under native conditions. This Mab exhibited high apparent affinity constant (KApp) for β-d-glucans from several mushroom strains. However, it revealed differential reactivity to some heat-treated β-d-glucans compared with the native forms suggesting that it binds to a conformation-sensitive epitope on β-d-glucan molecule. Epitope analysis of Mab 3F8_3H7 and 1E6_1E8_B3 was investigated by additivity index parameter, which revealed that they bound to the same epitope on some β-d-glucans and to different epitopes in other antigens. Therefore, these Mab can be used to assay for β-d-glucans as well as to act as powerful probes to detect conformational changes in these biopolymers.
蘑菇菌株中的β-D-葡聚糖在多种临床病症中作为生物反应调节剂发挥着重要作用。因此,一种特定的检测方法对于寻找具有抗肿瘤活性的有用且新颖的β-D-葡聚糖来源至关重要。采用杂交瘤技术制备针对平菇胞外β-D-葡聚糖(EBG)的单克隆抗体(Mab)。从这些杂交瘤克隆中筛选出两个分泌针对平菇EBG的Mab的克隆(3F8_3H7和1E6_1E8_B3),并使用3F8_3H7通过ELISA洗脱试验研究它们是否为多元醇反应性单克隆抗体(PR-Mab)。该杂交瘤细胞系分泌IgM类的Mab,通过在Sephacryl S-300HR上进行凝胶过滤色谱一步纯化,其在天然PAGE上显示出一条Mr为917 kDa的蛋白带。Mab 3F8_3H7的特异性研究表明,通过间接ELISA和天然条件下的Western印迹法确定,它识别来自不同担子菌菌株的几种β-D-葡聚糖上的一个共同表位。该Mab对几种蘑菇菌株的β-D-葡聚糖表现出高表观亲和力常数(KApp)。然而,与天然形式相比,它对一些热处理的β-D-葡聚糖显示出不同的反应性,表明它与β-葡聚糖分子上的构象敏感表位结合。通过加性指数参数研究了Mab 3F8_3H7和1E6_1E8_B3的表位分析,结果表明它们在一些β-D-葡聚糖上结合到相同表位,而在其他抗原上结合到不同表位。因此,这些Mab可用于检测β-D-葡聚糖,也可作为强大的探针来检测这些生物聚合物中的构象变化。