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Cell-Free Protein Expression and Functional Assay in Nanowell Chip Format

机译:纳米孔芯片形式的无细胞蛋白质表达和功能测定

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摘要

The expression and characterization of large protein libraries requires high-throughput tools for rapid and cost-effective expression and screening. A promising tool to meet these requirements is miniaturized high-density plates in chip format, consisting of an array of wells with submicroliter volumes. Here, we show the combination of nanowell chip technology and cell-free transcription and translation of proteins. Using piezoelectric dispensers, we transferred proteins into nanowells down to volumes of 100 nL and successfully detected fluorescence using confocal laser scanning. Moreover, we showed cell-free expression of proteins on a nanoliter scale using commercially available coupled transcription and translation systems. To reduce costs, we demonstrated the feasibility of diluting the coupled in vitro transcription and translation mix prior to expression. Additionally, we present an enzymatic inhibition assay in nanowells to anticipate further applications, such as the high-throughput screening of drug candidates or the identification of novel enzymes for biotechnology.
机译:大型蛋白质文库的表达和表征需要高通量的工具才能快速且经济高效地表达和筛选。满足这些要求的一种有前途的工具是芯片形式的微型高密度板,该板由一系列具有亚微升体积的孔组成。在这里,我们展示了纳米孔芯片技术与蛋白质的无细胞转录和翻译的结合。使用压电分配器,我们将蛋白质转移到小至100 nL体积的纳米孔中,并使用共聚焦激光扫描成功检测到荧光。此外,我们使用商业上可获得的耦合转录和翻译系统,以纳升规模显示了蛋白质的无细胞表达。为了降低成本,我们证明了在表达之前稀释偶联的体外转录和翻译混合物的可行性。此外,我们在纳米孔中提出了一种酶促抑制测定法,以期待进一步的应用,例如候选药物的高通量筛选或用于生物技术的新型酶的鉴定。

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