首页> 外文期刊>Journal of Extracellular Vesicles >An engineered CD81‐based combinatorial library for selecting recombinant binders to cell surface proteins: Laminin binding CD81 enhances cellular uptake of extracellular vesicles
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An engineered CD81‐based combinatorial library for selecting recombinant binders to cell surface proteins: Laminin binding CD81 enhances cellular uptake of extracellular vesicles

机译:基于工程化CD81的组合文库,用于选择细胞表面蛋白的重组粘合剂:层粘连蛋白结合CD81增强了细胞外囊的细胞吸收

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The research of extracellular vesicles (EVs) has boomed in the last decade, with the promise of them functioning as target‐directed drug delivery vehicles, able to modulate proliferation, migration, differentiation, and other properties of the recipient cell that are vital for health of the host organism. To enhance the ability of their targeted delivery, we employed an intrinsically overrepresented protein, CD81, to serve for recognition of the desired target antigen. Yeast libraries displaying mutant variants of the large extracellular loop of CD81 have been selected for binders to human placental laminin as an example target. Their specific interaction with laminin was confirmed in a mammalian display system. Derived sequences were reformatted to full‐length CD81 and expressed in EVs produced by HeLa cells. These EVs were examined for the presence of the recombinant protein and were shown to exhibit an enhanced uptake into laminin‐secreting mammalian cell lines. For the best candidate, the specificity of antigen interaction was demonstrated with a competition experiment. To our knowledge, this is the first example of harnessing an EV membrane protein as mediator of de novo target antigen recognition via in vitro molecular evolution, opening horizons to a broad range of applications in various therapeutic settings.
机译:在过去的十年中,细胞外囊泡(EVS)的研究已经推动,其希望作为目标定向药物递送载体的承诺,能够调节对健康至关重要的受体细胞的增殖,迁移,分化和其他性质宿主生物。为了增强其靶向递送的能力,我们使用了一个内在的超级蛋白质CD81,用于识别所需的靶抗原。已经选择显示CD81的大细胞外环的突变体变体的酵母文库,用于将粘合剂作为实施例靶标的粘合剂。在哺乳动物显示系统中证实了与层粘连蛋白的特定相互作用。衍生的序列被重新格式化为全长CD81,并在通过HeLa细胞产生的EV中表达。检查这些EVS用于存在重组蛋白的存在,并显示出在层粘连蛋白分泌哺乳动物细胞系中表现出增强的摄取。对于最佳候选者,竞争实验证明了抗原相互作用的特异性。据我们所知,这是通过体外分子演进,在各种治疗环境中的广泛应用中,将EV膜蛋白作为De Novo靶抗原识别的介质利用EV膜蛋白的第一个例子。

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