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具有特异结合 L-生物素(非天然对映体)能力的镜像链霉亲和素。

Mirror-image streptavidin with specific binding to L-biotin, the unnatural enantiomer.

机构信息

Central Research Laboratories, Sysmex Corporation, Kawasaki, Kanagawa, 210-0821, Japan.

Central Research Laboratories, Sysmex Corporation, Kobe, 651-2271, Japan.

出版信息

Sci Rep. 2022 Jun 10;12(1):9568. doi: 10.1038/s41598-022-13763-4.

Abstract

The streptavidin-biotin system is known to have a very high affinity and specificity and is widely used in biochemical immunoassays and diagnostics. However, this method is affected by endogenous D-biotin in serum sample measurements (biotin interference). While several efforts using alternative high-affinity binding systems (e.g., genetically modified streptavidin and biotin derivatives) have been attempted, these efforts have all led to reduction in affinity. To solve this interference issue, the enantiomer of streptavidin was synthesized, which enabled specific binding to L-biotin. We successfully obtained a functional streptavidin molecule by peptide synthesis using D-amino acids and an in vitro folding technique. Several characterizations, including size exclusion chromatography (SEC), circular dichroism spectra (CD), and heat denaturation experiments collectively confirmed the higher-order enantiomer of natural streptavidin had been formed with comparable stability to the natural protein. L-biotin specific binding of this novel molecule enabled us to avoid biotin interference in affinity measurements using the Biacore system and enzyme-linked immunosorbent assay (ELISA). We propose the enantiomer of streptavidin as a potential candidate to replace the natural streptavidin-biotin system, even for in vivo use.

摘要

链霉亲和素-生物素系统以具有非常高的亲和力和特异性而闻名,被广泛应用于生化免疫分析和诊断。然而,该方法受到血清样本测量中内源性 D-生物素的影响(生物素干扰)。尽管已经尝试了几种使用替代高亲和力结合系统(例如,基因修饰的链霉亲和素和生物素衍生物)的方法,但这些方法都导致亲和力降低。为了解决这个干扰问题,合成了链霉亲和素的对映体,使其能够与 L-生物素特异性结合。我们成功地通过使用 D-氨基酸的肽合成和体外折叠技术获得了具有功能的链霉亲和素分子。包括尺寸排阻色谱(SEC)、圆二色光谱(CD)和热变性实验在内的几种特性分析共同证实,已经形成了具有与天然蛋白相当稳定性的天然链霉亲和素的高级别对映体。这种新型分子对 L-生物素的特异性结合使我们能够避免在使用 Biacore 系统和酶联免疫吸附测定(ELISA)进行亲和力测量时的生物素干扰。我们提出链霉亲和素的对映体作为一种潜在的候选物来替代天然的链霉亲和素-生物素系统,甚至可用于体内应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6605/9187662/635c22b08b20/41598_2022_13763_Fig1_HTML.jpg

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