A semicontinuous prokaryotic coupled transcription/translation system using a dialysis membrane

被引:125
作者
Kim, DM
Choi, CY
机构
[1] SEOUL NATL UNIV,COLL ENGN,IINTERDISCIPLINARY PROGRAM BIOCHEM ENGN & TECHNOL,SEOUL 151742,SOUTH KOREA
[2] SEOUL NATL UNIV,COLL ENGN,DEPT CHEM TECHNOL,SEOUL 151742,SOUTH KOREA
关键词
D O I
10.1021/bp960052l
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
This report describes a novel and simple cell-free protein synthesis system. In this paper, we prove that the short duration of protein synthesis in a conventional cell-free protein synthesis system of batch configuration can be attributed both to depletion of energy sources and deactivation of S30 extract by small-molecule byproducts produced during the protein synthesis. The reaction period of cell-free protein synthesis system could be extended through an operation of a continuous-flow cell-free protein synthesis system, which was originally developed by Spirin. However, inspite of the greatly extended reaction period, the final amount of cell-free produced protein was not significantlly larger than that can be obtained from a batch system due to the reduced rate of protein synthesis. It was supposed that the reduced rate of protein synthesis in the continuous-flow system was attributed to leakage of translational components through the ultrafiltration membrane during the operation of the continuous-flow system. To solve such a problem of the continuous-flow system, we have developed and operated a novel reactor for cell-free protein synthesis. By use of this system, protein synthesis occurred for at least 14 h, yielding 1.2 mg/mL CAT protein. The present system is superior to the continuous-flow system as well as the conventional batch system in that it enables extremely high productivity without using any complex and hard-to-handle apparatus. As far as we know, the yield of cell-free protein synthesis given above is the best of the results reported to date.
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页码:645 / 649
页数:5
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