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抗生素和抑制剂对M蛋白合成的影响。

EFFECT OF ANTIBIOTICS AND INHIBITORS ON M PROTEIN SYNTHESIS.

作者信息

BROCK T D

出版信息

J Bacteriol. 1963 Mar;85(3):527-31. doi: 10.1128/jb.85.3.527-531.1963.

Abstract

Brock, Thomas D. (Western Reserve University, Cleveland, Ohio). Effect of antibiotics and inhibitors on M protein synthesis. J. Bacteriol. 85:527-531. 1963.-This work extends the observations of Fox and Krampitz on M protein synthesis in nongrowing cells of streptococci. A survey of a large number of antibiotics and other potential inhibitors was made. Some substances bring about inhibition of fermentation and inhibit M protein synthesis because they deprive the cell of the energy needed for this process. A second group of substances inhibit growth at concentrations tenfold or more lower than they inhibit M protein synthesis. These are the antibiotics which inhibit synthesis of cell wall or other structures in growing cells, but do not affect protein synthesis. A third group of substances inhibit growth and M protein synthesis at the same concentration. These substances probably inhibit growth because they inhibit general protein synthesis, and are therefore specific inhibitors of protein synthesis. In this class are chloramphenicol, erythromycin, and the tetracyclines. Several other antibiotics of previously unknown mode of action are in this class. A fourth group of substances had no effect on M protein synthesis. No substances were found which inhibited M protein synthesis at a lower concentration than that which inhibited growth. M protein synthesis in nongrowing cells may be a useful model system for obtaining a detailed understanding of protein synthesis.

摘要

布罗克,托马斯·D.(俄亥俄州克利夫兰市西储大学)。抗生素和抑制剂对M蛋白合成的影响。《细菌学杂志》85:527 - 531。1963年。——这项工作扩展了福克斯和克兰皮茨对链球菌非生长细胞中M蛋白合成的观察。对大量抗生素和其他潜在抑制剂进行了调查。一些物质会导致发酵抑制并抑制M蛋白合成,因为它们使细胞缺乏该过程所需的能量。第二类物质在比抑制M蛋白合成低十倍或更多的浓度下抑制生长。这些是抑制生长细胞中细胞壁或其他结构合成但不影响蛋白质合成的抗生素。第三类物质在相同浓度下抑制生长和M蛋白合成。这些物质可能因为抑制一般蛋白质合成而抑制生长,因此是蛋白质合成的特异性抑制剂。此类包括氯霉素、红霉素和四环素。还有几种以前作用方式未知的其他抗生素也在此类。第四类物质对M蛋白合成没有影响。未发现有物质在比抑制生长更低的浓度下抑制M蛋白合成。非生长细胞中的M蛋白合成可能是一个用于详细了解蛋白质合成的有用模型系统。

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