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利用工程噬菌体生物缀合物探测表面膜受体。

Probing Surface Membrane Receptors Using Engineered Bacteriophage Bioconjugates.

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry RAS , Moscow , Russia , 117997.

Institute of Fundamental Medicine and Biology , Kazan Federal University , Kazan , Russia , 420012.

出版信息

Bioconjug Chem. 2019 May 15;30(5):1500-1506. doi: 10.1021/acs.bioconjchem.9b00218. Epub 2019 May 6.

Abstract

Specific recognition of ligands by surface receptors of eukaryotic cells is a fundamental process in sensing of the exogenous environment, including cell-to-cell communication. These interactions are therefore widely probed in both basic studies and drug development to enhance or interrupt them. Here, we designed a high-throughput publicly available platform for visualization and selection of eukaryotic cells according to the specificity of surface-exposed receptors by consolidation of phage display and flow cytometry techniques. Polypeptide ligands for membrane receptors are incorporated into every copy of p3 protein of M13K07 bacteriophage, which is intracellularly biotinylated to further accept PE-Cy7-labled streptavidin. Transgenic antigen-specific B-cells expressing membrane-tethered lymphoid B-cell receptor in a single-chain format interacted with engineered bacteriophages exposing the polypeptide ligand with an unprecedented selectivity of 97% and a false-positive detection value of 2.0%. Multivalent binding of the phage bioconjugates with the receptor provided significantly better specificity and sensitivity allowing application of engineered bacteriophage bioconjugates at a concentration 3 orders of magnitude lower in comparison with synthetic biotinylated peptide. We suggest that the platform described in this work may be applied either for routine staining or characterization of orphan membrane receptors exposed on the surface of living mammalian cells in their native environment.

摘要

真核细胞表面受体对配体的特异性识别是感应外环境的基本过程,包括细胞间通讯。因此,这些相互作用在基础研究和药物开发中都被广泛研究,以增强或中断它们。在这里,我们设计了一个高通量的、公开可用的平台,通过整合噬菌体展示和流式细胞术技术,根据表面暴露受体的特异性,可视化和选择真核细胞。膜受体的多肽配体被整合到 M13K07 噬菌体的 p3 蛋白的每一个拷贝中,该蛋白被细胞内生物素化,以进一步接受 PE-Cy7 标记的链霉亲和素。表达膜结合的淋巴 B 细胞受体的转基因抗原特异性 B 细胞以单链形式与工程噬菌体相互作用,暴露的多肽配体具有前所未有的 97%的选择性和 2.0%的假阳性检测值。噬菌体生物缀合物与受体的多价结合提供了更好的特异性和灵敏度,使得工程噬菌体生物缀合物可以在比合成生物素化肽低 3 个数量级的浓度下应用。我们认为,本文所述的平台可用于常规染色或鉴定在其天然环境中暴露于活哺乳动物细胞表面的孤儿膜受体。

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