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标签和电荷密度对与阴离子荧光团偶联的治疗性单克隆抗体曲妥珠单抗和西妥昔单抗结合的影响。

Influence of Label and Charge Density on the Association of the Therapeutic Monoclonal Antibodies Trastuzumab and Cetuximab Conjugated to Anionic Fluorophores.

作者信息

Pauli Jutta, Pochstein Marieke, Haase Andrea, Napp Joanna, Luch Andreas, Resch-Genger Ute

机构信息

Federal Institute for Materials Research and Testing (BAM), Division 1.10 Biophotonics, Richard-Willstaetter-Strasse 11, 12489, Berlin, Germany.

German Federal Institute for Risk Assessment (BfR), Department of Chemical and Product Safety, Max-Dohrn-Strasse 8-10, 10589, Berlin, Germany.

出版信息

Chembiochem. 2017 Jan 3;18(1):101-110. doi: 10.1002/cbic.201600299. Epub 2016 Nov 30.

Abstract

The design of bright and functional dye-protein conjugates requires hydrophilic and stable fluorophores with high molar absorption coefficients and high fluorescence quantum yields, which must not be prone to dimerization, as well as conservation of protein function and suppression of protein association. Although many synthetic dyes meet these needs, the influence of dye charge on bioconjugate performance is commonly neglected. This encouraged us to assess the spectroscopic properties, antibody functionality, binding behavior, folding, and association of conjugates of the therapeutic antibodies trastuzumab and cetuximab with the red cyanine dyes S0586, S2381, and 6SIDCC (bearing two, three, and six sulfonate groups, respectively). Our results demonstrate a negligible effect of dye labeling on antibody folding, yet a strong influence of label charge and density on antibody isoelectric points and association. Especially 6SIDCC decreased strongly the isoelectric points of both antibodies and their heavy or light chains even at low labeling degrees, thus favoring protein association. Although an increasingly negative dye charge reduces antigen affinity as shown in a competitive immunoassay, all conjugates still bound to cells overexpressing the target of the respective antibody. Obviously, dyes that cause minimum dimerization with a small number of charged groups are best for conjugate brightness, minimum protein association, and strong target binding. This underlines the need to consider dye charge for the rational design of conjugates with optimum performance.

摘要

设计明亮且功能强大的染料 - 蛋白质缀合物需要具有高摩尔吸收系数和高荧光量子产率的亲水性和稳定性荧光团,这些荧光团不能易于二聚化,同时要保持蛋白质功能并抑制蛋白质缔合。尽管许多合成染料满足这些需求,但染料电荷对生物缀合物性能的影响通常被忽视。这促使我们评估治疗性抗体曲妥珠单抗和西妥昔单抗与红色花青染料S0586、S2381和6SIDCC(分别带有两个、三个和六个磺酸基团)缀合物的光谱性质、抗体功能、结合行为、折叠和缔合情况。我们的结果表明染料标记对抗体折叠的影响可忽略不计,但标记电荷和密度对抗体等电点和缔合有强烈影响。特别是6SIDCC即使在低标记度下也会显著降低两种抗体及其重链或轻链的等电点,从而有利于蛋白质缔合。尽管如竞争性免疫测定所示,越来越负的染料电荷会降低抗原亲和力,但所有缀合物仍能与过表达相应抗体靶标的细胞结合。显然,带少量电荷基团且导致最小二聚化的染料最适合用于获得最佳的缀合物亮度、最小的蛋白质缔合和强的靶标结合。这突出了在合理设计具有最佳性能的缀合物时考虑染料电荷的必要性。

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