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Multifunctional Transmembrane Protein Ligands for Cell-Specific Targeting of Plasma Membrane-Derived Vesicles

机译:多功能跨膜蛋白配体用于血浆膜衍生囊泡的细胞特异性靶向

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摘要

Liposomes and nanoparticles that bind selectively to cell-surface receptors can target specific populations of cells. However, chemical conjugation of ligands to these particles is difficult to control, frequently limiting ligand uniformity and complexity. In contrast, the surfaces of living cells are decorated with highly uniform populations of sophisticated transmembrane proteins. Toward harnessing cellular capabilities, here it is demonstrated that plasma membrane vesicles (PMVs) derived from donor cells can display engineered transmembrane protein ligands that precisely target cells on the basis of receptor expression. These multifunctional targeting proteins incorporate (i) a protein ligand, (ii) an intrinsically disordered protein spacer to make the ligand sterically accessible, and (iii) a fluorescent protein domain that enables quantification of the ligand density on the PMV surface. PMVs that display targeting proteins with affinity for the epidermal growth factor receptor (EGFR) bind at increasing concentrations to breast cancer cells that express increasing levels of EGFR. Further, as an example of the generality of this approach, PMVs expressing a single-domain antibody against green fluorescence protein (eGFP) bind to cells expressing eGFP-tagged receptors with a selectivity of approximate to 50:1. The results demonstrate the versatility of PMVs as cell targeting systems, suggesting diverse applications from drug delivery to tissue engineering.
机译:选择性结合细胞表面受体的脂质体和纳米颗粒可以靶向特定的细胞群。然而,配体与这些颗粒的化学缀合是难以控制的,经常限制了配体的均匀性和复杂性。相反,活细胞的表面装饰有高度均匀的复杂跨膜蛋白。为了利用细胞的功能,这里证明了来自供体细胞的质膜囊泡(PMV)可以显示出经过工程改造的跨膜蛋白配体,这些配体可以根据受体表达精确地靶向细胞。这些多功能靶向蛋白结合了(i)蛋白质配体,(ii)使该配体在空间上可及的内在无序的蛋白质间隔区和(iii)荧光蛋白结构域,该结构域可量化PMV表面上的配体密度。显示对表皮生长因子受体(EGFR)具有亲和力的靶向蛋白的PMV以越来越高的浓度与表达EGFR水平升高的乳腺癌细胞结合。此外,作为这种方法的一般性示例,表达针对绿色荧光蛋白(eGFP)的单域抗体的PMV与表达eGFP标签的受体的细胞结合,选择性接近50:1。结果证明了PMV作为细胞靶向系统的多功能性,表明了从药物递送到组织工程的各种应用。

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