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首页> 外文期刊>Biotechnology and Bioengineering >Prolonged cell-free protein synthesis using dual energy sources: Combined use of creatine phosphate and glucose for the efficient supply of ATP and retarded accumulation of phosphate
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Prolonged cell-free protein synthesis using dual energy sources: Combined use of creatine phosphate and glucose for the efficient supply of ATP and retarded accumulation of phosphate

机译:双重能源可延长无细胞蛋白质的合成:磷酸肌酸和葡萄糖的联合使用可有效地提供ATP并阻止磷酸盐的积累

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摘要

The accumulation of inorganic phosphate inhibits protein synthesis in cell-free protein synthesis reactions that are energized by high-energy-phosphate-containi ng compounds. This study developed a new scheme for supplying energy using dual energy sources to enhance the regeneration of ATP and lower the rate of phosphate accumulation. In the proposed scheme, where creatine phosphate (CP) and glucose were simultaneously used as the energy sources, the phosphate released from the CP was subsequently used in the glycolytic pathway for the utilization of the glucose, which enhanced the ATP supply and reduced the rate of inorganic phosphate accumulation. When tested against different proteins, the developed method produced 2-3 times more protein than the conventional ATP regeneration methods using single energy sources.
机译:无机磷酸盐的积累会抑制无细胞蛋白质合成反应中的蛋白质合成,而无细胞蛋白质合成反应是由高能磷酸盐含量高的化合物激发的。这项研究开发了一种使用双能源供应能量的新方案,以增强ATP的再生并降低磷酸盐的积累速率。在提出的方案中,同时使用肌酸磷酸酯(CP)和葡萄糖作为能源,随后从CP释放的磷酸酯被用于糖酵解途径中以利用葡萄糖,这增加了ATP的供应并降低了速率无机磷酸盐的积累。当针对不同的蛋白质进行测试时,所开发的方法产生的蛋白质比使用单一能源的常规ATP再生方法高出2-3倍。

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