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Miniaturized Fluid Array for High-Throughput Protein Expression

机译:用于高通量蛋白质表达的小型化流体阵列

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摘要

We describe a miniaturized fluid array device for high-throughput cell-free protein synthesis (CFPS), aiming to match the throughput and scale of gene discovery. Current practice of using E. coli cells for production of recombinant proteins is difficult and cost-prohibitive to implement in a high-throughput format. As more and more new genes are being identified, there is a considerable need to have high-throughput methods to produce a large number of proteins for studying structures and functions of the corresponding genes. The device consists of 96 units and each unit is for expression of one protein; thus up to 96 proteins can be produced simultaneously. The function of the fluid array was demonstrated by expression of a variety of proteins, with more than two orders of magnitude reduction in reagent consumption compared with a commercially available CFPS instrument. The protein expression yield in the device was up to 87 times higher for β-glucoronidase than that in a conventional microplate. The concentration of β-galactosidase expressed in the device was determined at 5.5 βg/μL. The feasibility of using the device for drug screening was demonstrated by measuring the inhibitory effects of mock drug compounds on synthesized β-lactamase without the need for harvesting proteins, which enabled us to reduce the analysis time from days to hours.
机译:我们描述了一种用于高通量无细胞蛋白质合成(CFPS)的小型化流体阵列设备,旨在匹配基因发现的通量和规模。使用大肠杆菌细胞生产重组蛋白的当前实践难以以高通量形式实施且成本高昂。随着越来越多的新基因被鉴定,迫切需要一种高通量方法来产生大量蛋白质,以研究相应基因的结构和功能。该设备由96个单位组成,每个单位用于表达一种蛋白质。因此最多可以同时生产96种蛋白质。流体阵列的功能通过多种蛋白质的表达得以证明,与市售CFPS仪器相比,试剂消耗量减少了两个数量级以上。与传统的微孔板相比,β-葡糖醛酸苷酶在装置中的蛋白表达产量高87倍。确定设备中表达的β-半乳糖苷酶浓度为5.5βg/μL。通过测量模拟药物化合物对合成的β-内酰胺酶的抑制作用而无需收获蛋白质,证明了使用该装置进行药物筛选的可行性,这使我们能够将分析时间从几天减少到几小时。

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