SpyBLI无细胞管道用于原油样品结合动力学的快速定量。

IF 3.1 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Olga Predeina, Misha Atkinson, Oliver Wissett, Montader Ali, Cristina Visentin, Stefano Ricagno, Anthony H. Keeble, Mark R. Howarth and Pietro Sormanni
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引用次数: 0

摘要

结合动力学的精确测量,包括平衡解离常数(kd),结合率(K on)和解离率(K off),对于高亲和力结合蛋白的开发和优化至关重要。然而,这种测量需要高度纯化的材料和精确的配体固定,限制了在合理的时间尺度和预算内表征的粘合剂数量。在这里,我们提出了SpyBLI方法,这是一种快速且具有成本效益的生物层干涉法(BLI)管道,利用SpyCatcher003-SpyTag003共价结合,消除了结合剂纯化和浓度测定的需要。这种方法可以直接从粗哺乳动物细胞上清液或无细胞表达混合物中进行精确的结合动力学测量。我们还引入了一种线性基因片段设计,可以在无细胞系统中可靠地表达,无需任何PCR或克隆步骤,允许在24小时内从接收廉价的DNA片段收集结合动力学数据,只需最少的动手时间。我们使用一系列纳米体和单链抗体可变片段(scFvs)证明了该方法的广泛适用性,其亲和值跨越六个数量级。通过最大限度地减少样品制备,并采用高度控制的有序传感器固定,我们的工作流程可以在不牺牲精度的情况下,从原油混合物中提供可靠的动力学测量。我们期望在高通量下进行快速准确的结合测量的机会对于结合剂工程,下一代测序衍生文库的筛选和计算蛋白设计尤其有价值,其中必须快速准确地表征相同靶标的大量潜在结合剂,以实现迭代优化和候选选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The SpyBLI cell-free pipeline for the rapid quantification of binding kinetics from crude samples†

The SpyBLI cell-free pipeline for the rapid quantification of binding kinetics from crude samples†

Accurate measurements of binding kinetics, encompassing equilibrium dissociation constant (KD), association rate (kon), and dissociation rate (koff), are critical for the development and optimisation of high-affinity binding proteins. However, such measurements require highly purified material and precise ligand immobilisation, limiting the number of binders that can be characterised within a reasonable timescale and budget. Here, we present the SpyBLI method, a rapid and cost-effective biolayer interferometry (BLI) pipeline that leverages the SpyCatcher003–SpyTag003 covalent association, eliminating the need for both binder purification and concentration determination. This approach allows for accurate binding-kinetic measurements to be performed directly from crude mammalian-cell supernatants or cell-free expression blends. We also introduce a linear gene fragment design that enables reliable expression in cell-free systems without any PCR or cloning steps, allowing binding kinetics data to be collected in under 24 hours from receiving inexpensive DNA fragments, with minimal hands-on time. We demonstrate the method's broad applicability using a range of nanobodies and single-chain antibody variable fragments (scFvs), with affinity values spanning six orders of magnitude. By minimising sample preparation and employing highly controlled, ordered sensor immobilisation, our workflow delivers reliable kinetic measurements from crude mixtures without sacrificing precision. We expect that the opportunity to carry out rapid and accurate binding measurements in good throughput should prove especially valuable for binder engineering, the screening of next-generation sequencing–derived libraries, and computational protein design, where large numbers of potential binders for the same target must be rapidly and accurately characterised to enable iterative refinement and candidate selection.

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来源期刊
CiteScore
6.10
自引率
0.00%
发文量
128
审稿时长
10 weeks
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