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CotA漆酶:使用基于微滴的微流控技术对在大肠杆菌中表达的重组酶文库进行高通量操作和分析。

CotA laccase: high-throughput manipulation and analysis of recombinant enzyme libraries expressed in E. coli using droplet-based microfluidics.

作者信息

Beneyton Thomas, Coldren Faith, Baret Jean-Christophe, Griffiths Andrew D, Taly Valérie

机构信息

Laboratoire de Biologie Chimique, Institut de Science et d'Ingénierie Supramoléculaires (ISIS), CNRS UMR 7006, 8 allée Gaspard Monge, F-67083 Strasbourg, France.

出版信息

Analyst. 2014 Jul 7;139(13):3314-23. doi: 10.1039/c4an00228h.

Abstract

We present a high-throughput droplet-based microfluidic analysis/screening platform for directed evolution of CotA laccase: droplet-based microfluidic modules were combined to develop an efficient system that allows cell detection and sorting based on the enzymatic activity. This platform was run on two different operating modes: the "analysis" mode allowing the analysis of the enzymatic activity in droplets at very high rates (>1000 Hz) and the "screening" mode allowing sorting of active droplets at 400 Hz. The screening mode was validated for the directed evolution of the cytoplasmic CotA laccase from B. subtilis, a potential interesting thermophilic cathodic catalyst for biofuel cells. Single E. coli cells expressing either the active CotA laccase (E. coli CotA) or an inactive frameshifted variant (E. coli ΔCotA) were compartmentalized in aqueous droplets containing expression medium. After cell growth and protein expression within the droplets, a fluorogenic substrate was "picoinjected" in each droplet. Fluorescence-activated droplet sorting was then used to sort the droplets containing the desired activity and the corresponding cells were then recultivated and identified using colorimetric assays. We demonstrated that E. coli CotA cells were enriched 191-fold from a 1 : 9 initial ratio of E. coli CotA to E. coli ΔCotA cells (or 437-fold from a 1 : 99 initial ratio) using a sorting rate of 400 droplets per s. This system allows screening of 10(6) cells in only 4 h, compared to 11 days for screening using microtitre plate-based systems. Besides this low error rate sorting mode, the system can also be used at higher throughputs in "enrichment" screening mode to make an initial purification of a library before further steps of selection. Analysis mode, without sorting, was used to rapidly quantify the activity of a CotA library constructed using error-prone PCR. This mode allows analysis of 10(6) cells in only 1.5 h.

摘要

我们展示了一种用于嗜热栖热放线菌漆酶定向进化的基于液滴的高通量微流控分析/筛选平台:将基于液滴的微流控模块组合起来,开发出一种高效系统,该系统能够基于酶活性进行细胞检测和分选。此平台以两种不同的操作模式运行:“分析”模式允许以非常高的速率(>1000 Hz)分析液滴中的酶活性,“筛选”模式允许以400 Hz的速率分选活性液滴。已验证筛选模式可用于枯草芽孢杆菌胞质嗜热栖热放线菌漆酶的定向进化,该漆酶是生物燃料电池潜在的有趣嗜热阴极催化剂。表达活性嗜热栖热放线菌漆酶(大肠杆菌嗜热栖热放线菌)或无活性移码变体(大肠杆菌Δ嗜热栖热放线菌)的单个大肠杆菌细胞被分隔在含有表达培养基的水性液滴中。在液滴内细胞生长和蛋白质表达后,将荧光底物“皮升注射”到每个液滴中。然后使用荧光激活液滴分选来分选含有所需活性的液滴,随后对相应的细胞进行再培养,并使用比色测定法进行鉴定。我们证明,使用每秒400个液滴的分选速率,从大肠杆菌嗜热栖热放线菌与大肠杆菌Δ嗜热栖热放线菌细胞1:9的初始比例中,大肠杆菌嗜热栖热放线菌细胞富集了191倍(或从1:99的初始比例中富集了437倍)。该系统仅需4小时就能筛选10⁶个细胞,而基于微孔板的系统筛选则需要11天。除了这种低错误率的分选模式外,该系统还可以在“富集”筛选模式下以更高的通量使用,以便在进一步的选择步骤之前对文库进行初步纯化。不进行分选的分析模式用于快速定量使用易错PCR构建的嗜热栖热放线菌文库的活性。此模式仅需1.5小时就能分析10⁶个细胞。

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