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一种使用抗体-小肽融合的三部分蛋白互补系统可实现均相免疫分析。

A Tri-part Protein Complementation System Using Antibody-Small Peptide Fusions Enables Homogeneous Immunoassays.

机构信息

Department of Pharmaceutics and Pharmaceutical Chemistry, College of Pharmacy, University of Utah, 30 South 2000 East, Room 301, Salt Lake City, UT, 84112, USA.

出版信息

Sci Rep. 2017 Aug 15;7(1):8186. doi: 10.1038/s41598-017-07569-y.

Abstract

Protein-fragment complementation is a valuable tool for monitoring protein interactions. In complementation assays, the reporter fragments are directly fused to the interacting proteins, eliminating the possibility of monitoring native interactions. In principle, complementation could be achieved by placing the reporter fragments on antibodies which bind to the proteins of interest, enabling the monitoring of endogenous protein interactions or detection of a single protein in a homogeneous immunoassay. Previous reports have demonstrated proof-of-concept of this approach; however, current complementation systems have not met the practical requirements as suitable fusion partners for antibodies while providing the sensitivity needed for immunoassays. To surmount these challenges, we created a first-in-class, tri-part split luciferase consisting of two 11-residue peptides that are used as the antibody appendages. As an initial proof-of-concept, we used antibody-peptide fusions and found them to be capable of quantifying pg/mL concentrations of soluble or cell-bound HER2, proving this unique complementation system overcomes previous limitations and transforms this approach from merely possible to practical and useful. As shown herein, this dual-peptide system provides a rapid, simple, and sensitive "add-and-read" homogeneous immunoassay platform that can be broadly adapted as an alternative to traditional immunoassays, and in the future should enable complementation to be expanded to monitoring endogenous protein interactions.

摘要

蛋白片段互补是监测蛋白相互作用的一种有效工具。在互补测定中,报告片段直接融合到相互作用的蛋白上,消除了监测天然相互作用的可能性。原则上,可以通过将报告片段放在与感兴趣的蛋白结合的抗体上来实现互补,从而能够监测内源性蛋白相互作用或在均相免疫测定中检测单个蛋白。先前的报告已经证明了这种方法的原理验证;然而,当前的互补系统尚未满足作为抗体的合适融合伙伴的实际要求,同时提供免疫测定所需的灵敏度。为了克服这些挑战,我们创建了一种首创的三部分分裂荧光素酶,由两个 11 个残基的肽组成,用作抗体附加物。作为初始概念验证,我们使用了抗体-肽融合,并发现它们能够定量检测 pg/mL 浓度的可溶性或细胞结合的 HER2,证明了这种独特的互补系统克服了以前的限制,并将这种方法从仅仅可能转变为实际和有用。如本文所示,这种双肽系统提供了一种快速、简单、灵敏的“添加和读取”均相免疫分析平台,可以广泛地替代传统的免疫测定,并且在未来应该能够扩展互补以监测内源性蛋白相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f012/5557857/4091c3d8a3a7/41598_2017_7569_Fig1_HTML.jpg

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