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One in a million: flow cytometric sorting of single cell-lysate assays in monodisperse picolitre double emulsion droplets for directed evolution

机译:百万分之一:流式细胞仪分选单细胞裂解物分析单分散picolitre双乳液液滴用于定向进化

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摘要

Directed evolution relies on iterative cycles of randomization and selection. The outcome of an artificial evolution experiment is crucially dependent on (i) the numbers of variants that can be screened and (ii) the quality of the assessment of each clone that forms the basis for selection. Compartmentalization of screening assays in water-in-oil emulsion droplets provides an opportunity to screen vast numbers of individual assays with good signal quality. Microfluidic systems have been developed to make and sort droplets, but the operator skill required precludes their ready implementation in nonspecialist settings. We now establish a protocol for the creation of monodisperse double-emulsion droplets in two steps in microfluidic devices with different surface characteristics (first hydrophobic, then hydrophilic). The resulting double-emulsion droplets are suitable for quantitative analysis and sorting in a commercial flow cytometer. The power of this approach is demonstrated in a series of enrichment experiments, culminating in the successful recovery of catalytically active clones from a sea of 1?000?000-fold as many low-activity variants. The modular workflow allows integration of additional steps: the encapsulated lysate assay reactions can be stopped by heat inactivation (enabling ready control of selection stringency), the droplet size can be contracted (to concentrate its contents), and storage (at ?80 °C) is possible for discontinuous workflows. The control that can be thus exerted on screening conditions will facilitate exploitation of the potential of protein libraries compartmentalized in droplets in a straightforward protocol that can be readily implemented and used by protein engineers
机译:定向进化依赖于随机化和选择的迭代循环。人工进化实验的结果关键取决于(i)可以筛选的变体数量,以及(ii)构成选择基础的每个克隆的评估质量。油包水型乳剂液滴中筛选试验的区室化为筛选具有良好信号质量的大量单独试验提供了机会。已经开发了微流体系统来制造和分类液滴,但是所需的操作员技能使其无法在非专家环境中立即实施。现在,我们建立了在具有不同表面特性(首先是疏水性,然后是亲水性)的微流体装置中分两步创建单分散双乳液液滴的协议。所得的双乳液液滴适用于在商业流式细胞仪中进行定量分析和分类。在一系列富集实验中证明了这种方法的强大功能,最终成功地从1 000 000 000倍于许多低活性变体的海中成功回收了催化活性克隆。模块化的工作流程允许集成其他步骤:可以通过热灭活(启用对选择严格性的随时控制)来停止封装的裂解物测定反应,可以缩小液滴的大小(以浓缩其内容物)并存储(在80°C下) )适用于不连续的工作流程。因此,可以对筛选条件施加的控制将有助于以简单的协议来利用液滴中分隔的蛋白质库的潜力,该协议易于蛋白质工程师实施和使用

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