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Robust production of recombinant phosphoproteins using cell-free protein synthesis

机译:利用无细胞蛋白质合成稳定生产重组磷蛋白

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摘要

Understanding the functional and structural consequences of site-specific protein phosphorylation has remained limited by our inability to produce phosphoproteins at high yields. Here we address this limitation by developing a cell-free protein synthesis (CFPS) platform that employs crude extracts from a genomically recoded strain of Escherichia coli for site-specific, co-translational incorporation of phosphoserine into proteins. We apply this system to the robust production of up to milligram quantities of human MEK1 kinase. Then, we recapitulate a physiological signalling cascade in vitro to evaluate the contributions of site-specific phosphorylation of mono-and doubly phosphorylated forms on MEK1 activity. We discover that only one phosphorylation event is necessary and sufficient for MEK1 activity. Our work sets the stage for using CFPS as a rapid high-throughput technology platform for direct expression of programmable phosphoproteins containing multiple phosphorylated residues. This work will facilitate study of phosphorylation-dependent structure-function relationships, kinase signalling networks and kinase inhibitor drugs.
机译:对位点特异性蛋白磷酸化的功能和结构后果的了解仍然受到我们无法以高产量生产磷蛋白的限制。在这里,我们通过开发无细胞蛋白质合成(CFPS)平台来解决这一局限,该平台采用了从基因组重新编码的大肠杆菌菌株中提取的粗提物,用于磷酸丝氨酸位点特异性,共翻译结合到蛋白质中。我们将此系统应用于高达毫克量的人MEK1激酶的稳定生产。然后,我们概述了体外的生理信号传导级联,以评估单和双磷酸化形式对MEK1活性的位点特异性磷酸化的贡献。我们发现只有一个磷酸化事件是必要和足够的MEK1活性。我们的工作为将CFPS用作直接表达包含多个磷酸化残基的可编程磷蛋白的快速高通量技术平台奠定了基础。这项工作将有助于研究磷酸化依赖性结构-功能关系,激酶信号网络和激酶抑制剂药物。

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