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首页> 外文期刊>Applied and Environmental Microbiology >Magnetosome Expression of Functional Camelid Antibody Fragments (Nanobodies) in Magnetospirillum gryphiswaldense
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Magnetosome Expression of Functional Camelid Antibody Fragments (Nanobodies) in Magnetospirillum gryphiswaldense

机译:功能性骆驼科抗体片段(纳米抗体)在磁螺旋藻中的磁小体表达

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Numerous applications of conventional and biogenic magnetic nanoparticles (MNPs), such as in diagnostics, immunomagnetic separations, and magnetic cell labeling, require the immobilization of antibodies. This is usually accomplished by chemical conjugation, which, however, has several disadvantages, such as poor efficiency and the need for coupling chemistry. Here, we describe a novel strategy to display a functional camelid antibody fragment (nanobody) from an alpaca (Lama pacos) on the surface of bacterial biogenic magnetic nanoparticles (magnetosomes). Magnetosome-specific expression of a red fluorescent protein (RFP)-binding nanobody (RBP) in vivo was accomplished by genetic fusion of RBP to the magnetosome protein MamC in the magnetite-synthesizing bacterium Magnetospirillum gryphiswaldense. We demonstrate that isolated magnetosomes expressing MamC-RBP efficiently recognize and bind their antigen in vitro and can be used for immunoprecipitation of RFP-tagged proteins and their interaction partners from cell extracts. In addition, we show that coexpression of monomeric RFP (mRFP or its variant mCherry) and MamC-RBP results in intracellular recognition and magnetosome recruitment of RFP within living bacteria. The intracellular expression of a functional nanobody targeted to a specific bacterial compartment opens new possibilities for in vivo synthesis of MNP-immobilized nanobodies. Moreover, intracellular nanotraps can be generated to manipulate bacterial structures in live cells.
机译:常规和生物磁性纳米颗粒(MNP)的大量应用,例如在诊断,免疫磁性分离和磁性细胞标记中,都需要固定抗体。这通常是通过化学共轭来完成的,但是,化学共轭有几个缺点,例如效率低和需要化学偶联。在这里,我们描述了一种新颖的策略,可以在细菌生物成因的磁性纳米颗粒(磁性体)的表面上显示来自羊驼(美洲驼)的功能骆驼科动物抗体片段(纳米抗体)。通过在磁铁矿合成细菌Magnetospirillum gryphiswaldense中将RBP与磁小体蛋白MamC遗传融合,可以实现体内红色荧光蛋白(RFP)结合纳米抗体(RBP)的磁小体特异性表达。我们证明,表达MamC-RBP的分离的磁小体在体外有效识别并结合其抗原,可用于从细胞提取物中免疫沉淀RFP标记的蛋白及其相互作用的伴侣。此外,我们显示单体RFP(mRFP或其变体mCherry)和MamC-RBP的共表达可导致活细菌内RFP的细胞内识别和磁小体募集。靶向特定细菌区室的功能性纳米抗体的细胞内表达为体内合成MNP固定的纳米抗体开辟了新的可能性。而且,可以产生细胞内纳米阱来操纵活细胞中的细菌结构。

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