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Molecular immunolabeling with recombinant single-chain variable fragment (scFv) antibodies designed with metal-binding domains

机译:重组单链变量的分子免疫标记 具有金属结合域的片段(scFv)抗体

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摘要

To study the molecular structure and function of gene products in situ, we developed a molecular immunolabeling technology. Starting with cDNA from hybridomas producing monoclonal antibodies against biotin, catalase, and superoxide dismutase, we bioengineered recombinant single-chain variable fragment antibodies (scFv) and their derivatives containing metal-binding domains (scFv:MBD). As tested with surface plasmon resonance and enzyme-linked immunosorbent assay, affinity binding constants of the scFv (5.21 × 106 M−1) and scFv:MBD (4.17 × 106 M−1) were close to those of Fab proteolytic fragments (9.78 × 106 M−1) derived from the parental IgG antibodies. After saturation of MBD with nickel or cobalt, scFv:MBD was imaged with electron spectroscopic imaging at each element's specific energy loss, thus generating the element's map. Immunolabeling with scFv:MBD resulted in a significant improvement of the labeling fidelity over that obtained with Fab or IgG derivatives, as it produced a much heavier specific labeling and label-free background. As determined with radioimmunoassay, labeling effectiveness with scFv:MBD was nearly the same as with scFv, but much higher than with scFv conjugated to colloidal gold, Nanogold, or horseradish peroxidase. This technology opens possibilities for simultaneous imaging of multiple molecules labeled with scFv:MBD at the molecular resolution within the same sample with electron spectroscopic imaging. Moreover, the same scFv:MBD can also be imaged with fluorescence resonance energy transfer and lifetime imaging as well as positron emission tomography and magnetic resonance imaging. Therefore, this technology may serve as an integrative factor in life science endeavors.
机译:为了研究基因产物的分子结构和功能,我们开发了一种分子免疫标记技术。从产生抗生物素,过氧化氢酶和超氧化物歧化酶的单克隆抗体的杂交瘤的cDNA开始,我们进行了生物工程改造的重组单链可变片段抗体(scFv)及其含有金属结合域的衍生物(scFv:MBD)。通过表面等离振子共振和酶联免疫吸附测定进行测试,scFv(5.21×106 M-1)和scFv:MBD(4.17×106 M-1)的亲和结合常数与Fab蛋白水解片段的亲和结合常数(9.78× 106 M-1)来自亲本IgG抗体。用镍或钴使MBD饱和后,用电子光谱成像法在每个元素的比能损失下对scFv:MBD进行成像,从而生成元素图。用scFv:MBD进行免疫标记比使用Fab或IgG衍生物获得的标记保真度显着提高,因为它产生了更重的特异性标记和无标记背景。通过放射免疫分析确定,scFv:MBD的标记效力与scFv几乎相同,但远高于缀合到胶体金,纳米金或辣根过氧化物酶的scFv。这项技术为利用电子光谱成像技术在同一样品内以分子分辨率同时对标记有scFv:MBD的多个分子成像提供了可能性。此外,相同的scFv:MBD也可以通过荧光共振能量转移和寿命成像以及正电子发射断层扫描和磁共振成像进行成像。因此,这项技术可以作为生命科学努力中的一个综合因素。

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