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高亲和性 RGD-类 Knottin 肽作为一种新工具,用于快速评估未标记的 RGD-肽与 αβ、αvβ3 和 αvβ5 整合素受体的结合强度。

High-Affinity RGD-Knottin Peptide as a New Tool for Rapid Evaluation of the Binding Strength of Unlabeled RGD-Peptides to αβ, αβ, and αβ Integrin Receptors.

机构信息

Pepscan Therapeutics , Zuidersluisweg 2, 8243 RC, Lelystad, The Netherlands.

DWI - Leibniz Institute for Interactive Materials , Forckenbeckstr. 50, 52056 Aachen, Germany.

出版信息

Anal Chem. 2017 Jun 6;89(11):5991-5997. doi: 10.1021/acs.analchem.7b00554. Epub 2017 May 24.

Abstract

We describe a highly sensitive competition ELISA to measure integrin-binding of RGD-peptides in high-throughput without using cells, ECM-proteins, or antibodies. The assay measures (nonlabeled) RGD-peptides' ability to inhibit binding of a biotinylated "knottin"-RGD peptide to surface-immobilized integrins and, thus, enables quantification of the binding strength of high-, medium-, and low-affinity RGD-binders. We introduced the biotinylated knottin-RGD peptide instead of biotinylated cyclo[RGDfK] (as reported by Piras et al.), as integrin-binding was much stronger and clearly detectable for all three integrins. In order to maximize sensitivity and cost-efficiency, we first optimized several parameters, such as integrin-immobilization levels, knottin-RGD concentration, buffer compositions, type of detection tag (biotin, His- or cMyc-tag), and spacer length. We thereby identified two key factors, that is, (i) the critical spacer length (longer than Gly) and (ii) the presence of Ca and Mg in all incubation and washing buffers. Binding of knottin-RGD peptide was strongest for αβ but also detectable for both αβ and αβ, while binding of biotinylated cyclo[RGDfK] was very weak and only detectable for αβ. For assay validation, we finally determined IC values for three unlabeled peptides, that is: (i) linear GRGDS, (ii) cyclo[RGDfK], and (iii) the knottin-RGD itself for binding to three different integrin receptors (αβ, αβ, αβ). Major benefits of the novel assay are (i) the extremely low consumption of integrin (50 ng/peptide), (ii) the fact that neither antibodies/ECM-proteins nor integrin-expressing cells are required for detection, and (iii) its suitability for high-throughput screening of (RGD-)peptide libraries.

摘要

我们描述了一种高灵敏度的竞争 ELISA 方法,可在不使用细胞、细胞外基质蛋白或抗体的情况下,高通量测量整合素结合 RGD 肽的情况。该测定法测量(未标记的)RGD 肽抑制生物素化“knottin”-RGD 肽与表面固定的整合素结合的能力,从而能够定量测定高、中、低亲和力 RGD 结合物的结合强度。我们引入了生物素化的 knottin-RGD 肽,而不是生物素化的环[RGDfK](如 Piras 等人所报道的),因为所有三种整合素的结合都更强,并且可以清晰检测到。为了最大限度地提高灵敏度和成本效益,我们首先优化了几个参数,例如整合素固定化水平、knottin-RGD 浓度、缓冲液组成、检测标签类型(生物素、His 或 cMyc 标签)和间隔子长度。我们因此确定了两个关键因素,即(i)关键间隔子长度(长于 Gly)和(ii)所有孵育和洗涤缓冲液中均存在 Ca 和 Mg。knottin-RGD 肽与 αβ 的结合最强,但也可检测到 αβ 和 αβ,而生物素化环[RGDfK]的结合非常弱,仅可检测到 αβ。为了验证测定法,我们最终确定了三种未标记肽的 IC 值,即:(i)线性 GRGDS,(ii)环[RGDfK]和(iii)knottin-RGD 本身与三种不同的整合素受体(αβ、αβ、αβ)结合。该新型测定法的主要优势在于(i)整合素的极低消耗(50ng/肽),(ii)无需抗体/细胞外基质蛋白或表达整合素的细胞即可进行检测,以及(iii)适用于(RGD-)肽文库的高通量筛选。

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