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基于大肠杆菌、小麦胚芽和兔网织红细胞粗细胞提取物的无细胞蛋白质合成效率。

Efficiency of cell-free protein synthesis based on a crude cell extract from Escherichia coli, wheat germ, and rabbit reticulocytes.

作者信息

Hino Mami, Kataoka Masatoshi, Kajimoto Kazuaki, Yamamoto Takenori, Kido Jun-Ichi, Shinohara Yasuo, Baba Yoshinobu

机构信息

Biomarker Analysis Team, Health Technology Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Takamatsu, Japan.

出版信息

J Biotechnol. 2008 Jan 20;133(2):183-9. doi: 10.1016/j.jbiotec.2007.08.008. Epub 2007 Aug 8.

Abstract

The efficiency of protein synthesis for glyceraldehyde-3-phosphate dehydrogenase (G3PDH) was examined with several in vitro coupled transcription/translation protein synthesis systems based on Escherichia coli lysate, wheat germ, or reticulocyte lysate, and an in vitro translation system based on wheat germ extract. A significant amount of protein synthesis was observed only in systems based on E. coli using pET/G3PDH as the expression vector. A remarkable increase of protein synthesis was obtained in wheat germ using a pT(N)T expression vector which contains a 5'-globin leader sequence and a synthetic poly(A)(30) tail instead of pET. A significant difference of T7 RNA polymerase presence by Western blot analysis was not observed in the first four systems, and the difference of total RNA presence in each reaction mixture by Northern blot analysis seemed unrelated to protein synthesis. Although a small amount of protein was synthesized using RNA-encoding G3PDH transcribed in vitro with pET/G3PDH by an in vitro translation system, an extreme increase was observed using transcribed RNA with pEU/G3PDH, which contains T7 RNA promoter and a translation enhancer, Omega sequence. These results suggest that the presence of an enhancer sequence for translation is one of the critical steps for protein synthesis by a eukaryotic cell-free protein synthesis system.

摘要

利用基于大肠杆菌裂解物、小麦胚芽或网织红细胞裂解物的几种体外偶联转录/翻译蛋白质合成系统,以及基于小麦胚芽提取物的体外翻译系统,检测了3-磷酸甘油醛脱氢酶(G3PDH)的蛋白质合成效率。仅在以pET/G3PDH作为表达载体、基于大肠杆菌的系统中观察到大量蛋白质合成。在小麦胚芽中,使用含有5'-珠蛋白前导序列和合成聚腺苷酸(30)尾的pT(N)T表达载体代替pET,蛋白质合成显著增加。在前四个系统中,通过蛋白质印迹分析未观察到T7 RNA聚合酶存在的显著差异,并且通过Northern印迹分析每个反应混合物中总RNA存在的差异似乎与蛋白质合成无关。虽然使用体外翻译系统对用pET/G3PDH体外转录的编码G3PDH的RNA合成了少量蛋白质,但使用含有T7 RNA启动子和翻译增强子Omega序列的pEU/G3PDH转录的RNA时,观察到蛋白质合成极度增加。这些结果表明,翻译增强子序列的存在是真核无细胞蛋白质合成系统进行蛋白质合成的关键步骤之一。

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