Vandevenne Evelien, Van Buggenhout Sandy, Duvetter Thomas, Brouwers Els, Declerck Paul J, Hendrickx Marc E, Van Loey Ann, Gils Ann
Laboratory of Food Technology and Leuven Food Science and Nutrition Research Centre (LFoRCe), Department of Microbial and Molecular Systems (M2S), Katholieke Universiteit Leuven, Kasteelpark Arenberg 22, 3001 Leuven, Belgium.
J Immunol Methods. 2009 Sep 30;349(1-2):18-27. doi: 10.1016/j.jim.2009.08.004. Epub 2009 Aug 15.
The enzyme pectin methylesterase (PME) was purified from red ripe tomatoes (Lycopersicon esculentum) and through affinity chromatography two isoenzymes were fractionated (t1PME and t2PME). Further analysis of these two isoenzymes, both having a molar mass of 34.5kDa, revealed a difference in the N-terminal sequence and in amino acid composition. t1PME was identified as the major isoenzyme of PME in tomato fruit. In this study the aim was to develop a toolbox, consisting of monoclonal antibodies, that allows to gain insight into the in situ localization of PME in plant based food systems like tomatoes. A panel of six interesting monoclonal antibodies was raised against both isoenzymes, designated MA-TOM1-12E11, MA-TOM1-41B2, MA-TOM2-9H8, MA-TOM2-20G7, MA-TOM2-31H1 and MA-TOM2-38A11. The differences in epitopes between these monoclonal antibodies were determined using affinity tests towards denatured PME, cross-reactivity tests and inhibition tests. Characterization of these antibodies indicated an immunological difference between t1PME and t2PME, also revealing a conserved epitope on t2PME, carrot PME and strawberry PME. Different epitopes are recognized by the generated antibodies making them excellent probes for immunolocalization of PME by tissue printing. In tomato, t1PME and t2PME showed a pronounced co-localization, especially in the pericarp and the radial arms of the pericarp. Three of the generated antibodies could be used for immunolocalization of PME in carrots (Daucus carota L.), which was only present in the cortex and not in the vascular cylinder of carrots.
从成熟的红色番茄(番茄)中纯化出果胶甲基酯酶(PME),通过亲和色谱法分离出两种同工酶(t1PME和t2PME)。对这两种摩尔质量均为34.5kDa的同工酶进行进一步分析,发现它们在N端序列和氨基酸组成上存在差异。t1PME被鉴定为番茄果实中PME的主要同工酶。在本研究中,目标是开发一个由单克隆抗体组成的工具箱,以深入了解PME在番茄等植物性食品系统中的原位定位。针对这两种同工酶产生了一组六种有趣的单克隆抗体,分别命名为MA-TOM1-12E11、MA-TOM1-41B2、MA-TOM2-9H8、MA-TOM2-20G7、MA-TOM2-31H1和MA-TOM2-38A11。通过对变性PME的亲和试验、交叉反应试验和抑制试验,确定了这些单克隆抗体之间表位的差异。这些抗体的特性表明t1PME和t2PME之间存在免疫差异,同时也揭示了t2PME、胡萝卜PME和草莓PME上的一个保守表位。所产生的抗体识别不同的表位,使其成为通过组织印迹法对PME进行免疫定位的优秀探针。在番茄中,t1PME和t2PME表现出明显的共定位,特别是在果皮和果皮的径向臂中。所产生的三种抗体可用于胡萝卜(胡萝卜)中PME的免疫定位,PME仅存在于胡萝卜的皮层中,而不存在于维管束中。