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通过荧光能量转移研究抗体结合位点的接近度。

Proximity of antibody binding sites studied by fluorescence energy transfer.

作者信息

Luedtke R, Owen C S, Karush F

出版信息

Biochemistry. 1980 Mar 18;19(6):1182-92. doi: 10.1021/bi00547a023.

Abstract

Fluorescence energy transfer experiments by steady-state and nanosecond monophoton techniques were carried out with a covalently linked hybrid rabbit IgG antibody containing one antilactose site and one anti-Dns [5-(dimethylamino)-1-naphthalenesulfonyl] site. The hybrid antibody was prepared from antilactose and anti-Dns antibody by mild reduction, dissociation into half-molecules in acid, and random reassociation with re-formation, to the extent of 80%, of the single disulfide bond between the heavy chains. Fractionation with an antilactose-specific immunoadsorbent yielded a population in which each IgG molecule contained no more than one anti-Dns site per antibody. The acceptor molecules used for intramolecular energy transfer were derivatives of p-aminophenyl beta-lactoside (PAPL): (dimethyl-amino)benzeneazo-PAPL and N-fluorescyl-PAPL. The fluorescence lifetime (24 ns) and quantum yield (0.57) of the bound Dns group were unaffected by the presence of the acceptor in the adjacent site. Three models were used to calculate the minimum distance between the adjacent sites of the IgG antibody based on the overlap in the emission and absorption spectra of the donor-acceptor pairs and the segmental flexibility of the immunoglobulin molecule. The calculations yielded values in the range of 5.5-7.0 nm for the minimum distance of separation between the antibody sites in solution and demonstrated a substantial energy barrier to the closer approach of the sites.

摘要

采用稳态和纳秒单光子技术,对一种共价连接的杂交兔IgG抗体进行了荧光能量转移实验,该抗体含有一个抗乳糖位点和一个抗Dns[5-(二甲基氨基)-1-萘磺酰基]位点。通过温和还原、在酸性条件下解离成半分子以及随机重新缔合,使重链之间的单二硫键重新形成至80%的程度,由抗乳糖抗体和抗Dns抗体制备了杂交抗体。用抗乳糖特异性免疫吸附剂进行分级分离,得到一个群体,其中每个IgG分子每个抗体所含抗Dns位点不超过一个。用于分子内能量转移的受体分子是对氨基苯基β-乳糖苷(PAPL)的衍生物:(二甲基氨基)苯偶氮-PAPL和N-荧光基-PAPL。相邻位点存在受体时,结合的Dns基团的荧光寿命(24纳秒)和量子产率(0.57)不受影响。基于供体-受体对的发射光谱和吸收光谱的重叠以及免疫球蛋白分子的片段柔韧性,使用三种模型计算了IgG抗体相邻位点之间的最小距离。计算得出溶液中抗体位点之间的最小分离距离在5.5-7.0纳米范围内,并表明位点更接近时存在相当大的能量障碍。

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