首页> 外文期刊>Journal of Molecular Biology >Development of a Human Light Chain Variable Domain (V(L)) Intracellular Antibody Specific for the Amino Terminus of Huntingtin via Yeast Surface Display.
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Development of a Human Light Chain Variable Domain (V(L)) Intracellular Antibody Specific for the Amino Terminus of Huntingtin via Yeast Surface Display.

机译:通过酵母表面展示对亨廷顿蛋白氨基末端特异的人类轻链可变域(V(L))细胞内抗体的开发。

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Intracellular antibodies (intrabodies) provide an attractive means for manipulating intracellular protein function, both for research and potentially for therapy. A challenge in the isolation of effective intrabodies is the ability to find molecules that exhibit sufficient binding affinity and stability when expressed in the reducing environment of the cytoplasm. Here, we have used yeast surface display of proteins to isolate novel scFv clones against huntingtin from a non-immune human antibody library. We then applied yeast surface display to affinity mature this scFv pool and analyze the location of the binding site of the mutant with the highest affinity. Interestingly, the paratope was mapped exclusively to the variable light chain domain of the scFv. A single domain antibody was constructed consisting solely of this variable light chain domain, and was found to retain full binding activity to huntingtin. Cytoplasmic expression levels in yeast of the single domain were at least fivefold higher thanthe scFv. The ability of the single-domain intrabody to inhibit huntingtin aggregation, which has been implicated in the pathogenesis of Huntington's disease (HD), was confirmed in a cell-free in vitro assay as well as in a mammalian cell culture model of HD. Significantly, a single-domain intrabody that is functionally expressable in the cytoplasm was derived from a non-functional scFv by performing affinity maturation and binding site analysis on the yeast cell surface, despite the differences between the cytoplasmic and extracellular environment. This approach may find application in the development of intrabodies to a wide variety of intracellular targets.
机译:细胞内抗体(体内抗体)为操纵细胞内蛋白质功能提供了一种有吸引力的手段,无论是用于研究还是可能用于治疗。分离有效胞内抗体的挑战是寻找在细胞质还原环境中表达时具有足够结合亲和力和稳定性的分子的能力。在这里,我们已使用蛋白质的酵母表面展示技术从非免疫人类抗体库中分离出针对亨廷顿蛋白的新型scFv克隆。然后,我们将酵母表面展示应用于亲和力成熟此scFv库,并分析具有最高亲和力的突变体结合位点的位置。有趣的是,互补位仅被映射到scFv的可变轻链结构域。构建了仅由该可变轻链结构域组成的单结构域抗体,并且发现其保留了与亨廷顿蛋白的完全结合活性。单结构域的酵母中的细胞质表达水平比scFv高至少五倍。在无细胞体外测定以及HD的哺乳动物细胞培养模型中证实了单域内抗体抑制亨廷顿蛋白凝集的能力,该能力与亨廷顿舞蹈病(HD)的发病有关。重要的是,尽管在细胞质和细胞外环境之间存在差异,但通过对酵母细胞表面进行亲和力成熟和结合位点分析,可以从非功能性scFv衍生出可在细胞质中表达的单域内抗体。这种方法可能在开发针对多种细胞内靶标的体内抗体中找到应用。

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