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Ultra-High-Throughput Screening of an In Vitro-Synthesized Horseradish Peroxidase Displayed on Microbeads Using Cell Sorter

机译:使用细胞分选仪在微珠上显示的体外合成辣根过氧化物酶的超高通量筛选

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摘要

The C1a isoenzyme of horseradish peroxidase (HRP) is an industrially important heme-containing enzyme that utilizes hydrogen peroxide to oxidize a wide variety of inorganic and organic compounds for practical applications, including synthesis of fine chemicals, medical diagnostics, and bioremediation. To develop a ultra-high-throughput screening system for HRP, we successfully produced active HRP in an Escherichia coli cell-free protein synthesis system, by adding disulfide bond isomerase DsbC and optimizing the concentrations of hemin and calcium ions and the temperature. The biosynthesized HRP was fused with a single-chain Cro (scCro) DNA-binding tag at its N-terminal and C-terminal sites. The addition of the scCro-tag at both ends increased the solubility of the protein. Next, HRP and its fusion proteins were successfully synthesized in a water droplet emulsion by using hexadecane as the oil phase and SunSoft No. 818SK as the surfactant. HRP fusion proteins were displayed on microbeads attached with double-stranded DNA (containing the scCro binding sequence) via scCro-DNA interactions. The activities of the immobilized HRP fusion proteins were detected with a tyramide-based fluorogenic assay using flow cytometry. Moreover, a model microbead library containing wild type hrp (WT) and inactive mutant (MUT) genes was screened using fluorescence-activated cell-sorting, thus efficiently enriching the WT gene from the 1:100 (WT:MUT) library. The technique described here could serve as a novel platform for the ultra-high-throughput discovery of more useful HRP mutants and other heme-containing peroxidases.
机译:辣根过氧化物酶(HRP)的C1a同工酶是一种工业上重要的含血红素的酶,它利用过氧化氢氧化多种无机和有机化合物,用于实际应用,包括精细化学品的合成,医学诊断和生物修复。为了开发HRP的超高通量筛选系统,我们通过添加二硫键异构酶DsbC并优化了血红素和钙离子的浓度以及温度,成功地在大肠杆菌无细胞蛋白合成系统中生产了活性HRP。生物合成的HRP在其N端和C端位点与单链Cro(scCro)DNA结合标签融合。在两端添加scCro-tag可增加蛋白质的溶解度。然后,以十六烷为油相,SunSoft No. 818SK为表面活性剂,在水滴乳液中成功合成了HRP及其融合蛋白。 HRP融合蛋白通过scCro-DNA相互作用显示在附着有双链DNA(包含scCro结合序列)的微珠上。固定化的HRP融合蛋白的活性使用流式细胞仪通过基于酪酰胺的荧光检测进行检测。此外,使用荧光激活的细胞分选方法筛选了包含野生型hrp(WT)和非活性突变(MUT)基因的模型微珠文库,从而有效地从1:100(WT:MUT)文库中富集了WT基因。这里描述的技术可以用作发现更多有用的HRP突变体和其他含血红素的过氧化物酶的超高通量的新平台。

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