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关于短芽孢杆菌无细胞系统中短杆菌肽S和蛋白质生物合成的进一步研究。

Further studies on the biosynthesis of gramicidin S and proteins in a cell-free system from Bacillus brevis.

作者信息

Spaeren U, Froholm L O, Laland S G

出版信息

Biochem J. 1967 Feb;102(2):586-92. doi: 10.1042/bj1020586.

Abstract
  1. An improved 11000g cell-free system for the incorporation of [(14)C]valine into gramicidin S has been obtained. The cell-free extract used was the supernatant obtained by treating Bacillus brevis with ultrasonics for 1min. followed by centrifugation at 11000g. The optimum pH for the incorporation was 8.2-8.4 and the optimum Mg(2+) concentration 0.05m. The presence of ammonium sulphate (0.1m) and K(+) (0.01m) increased the incorporation. 2. Cell-free extracts prepared from cells harvested in the early phase of growth (extinction value 0.1) incorporated negligible amounts of [(14)C]valine into gramicidin S compared with that incorporated by cell-free extracts prepared from cells harvested in the late phase of growth (extinction value 0.5). This was not due to the presence of inhibitors in the cell-free extracts prepared from cells harvested early, since there was no marked decrease in gramicidin S synthesis in a mixture of extracts prepared from cells harvested early and late in the growth phase. 3. The small incorporation of [(14)C]valine into protein, which took place in cell-free extracts from cells harvested in the late growth phase, was not inhibited by puromycin, chloramphenicol and ribonuclease. However, the substantial incorporation that took place in cell-free extracts prepared from cells harvested in the early phase of growth was completely inhibited by puromycin, chloramphenicol and ribonuclease. On mixing cell-free extracts prepared from cells harvested early and late in the growth phase, it appeared that the small incorporation that occurs in extracts from cells harvested in the late phase of growth was not due to cellular inhibitors.
摘要
  1. 已获得一种改进的11000g无细胞体系,用于将[(14)C]缬氨酸掺入短杆菌肽S中。所用的无细胞提取物是通过对短短芽孢杆菌进行1分钟超声处理,然后在11000g下离心获得的上清液。掺入的最适pH为8.2 - 8.4,最适Mg(2+)浓度为0.05m。硫酸铵(0.1m)和K(+)(0.01m)的存在增加了掺入量。2. 与从生长后期收获的细胞制备的无细胞提取物相比,从生长早期收获的细胞(消光值0.1)制备的无细胞提取物将可忽略不计的[(14)C]缬氨酸掺入短杆菌肽S中。这不是由于从早期收获的细胞制备的无细胞提取物中存在抑制剂,因为在从生长早期和晚期收获的细胞制备的提取物混合物中,短杆菌肽S的合成没有明显下降。3. 在生长后期收获的细胞的无细胞提取物中发生的[(14)C]缬氨酸少量掺入蛋白质的过程,不受嘌呤霉素、氯霉素和核糖核酸酶的抑制。然而,在生长早期收获的细胞制备的无细胞提取物中发生的大量掺入被嘌呤霉素、氯霉素和核糖核酸酶完全抑制。在将从生长早期和晚期收获的细胞制备的无细胞提取物混合时,似乎在生长后期收获的细胞提取物中发生的少量掺入不是由于细胞抑制剂。

相似文献

6
Biosynthesis of gramicidin S.短杆菌肽S的生物合成
Adv Enzymol Relat Areas Mol Biol. 1970;33:337-80. doi: 10.1002/9780470122785.ch7.
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BIOSYNTHESIS OF GRAMICIDIN S BY A CELL-FREE SYSTEM OF BACILLUS BREVIS.短芽孢杆菌无细胞系统合成短杆菌肽S
Biochem Biophys Res Commun. 1965 Apr 9;19:204-8. doi: 10.1016/0006-291x(65)90505-x.

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