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庆大霉素对蛋白质合成中活性和错读的三相浓度效应。

Triphasic concentration effects of gentamicin on activity and misreading in protein synthesis.

作者信息

Tai P C, Davis B D

出版信息

Biochemistry. 1979 Jan 9;18(1):193-8. doi: 10.1021/bi00568a029.

Abstract

Gentamicin is shown to exert a triphasic concentration effect on peptide synthesis in vitro with natural messengers. Low concentrations (up to 2 micron) caused slowing and a decrease in total synthesis, but little misreading (assayed with extracts lacking Glu-tRNA); the inhibition was greater with an initiating system (with phage RNA as messenger) than with pure chain elongation on purified endogenous polysomes of Escherichia coli. Moderate concentrations (up to 100 micron) slowed synthesis less, markedly increased its duration in the noninitiating system, and strongly stimulated misreading; at optimal concentrations total synthesis was even greater than normal. Moreover, with phage RNA these concentrations increased the synthesis of large polypeptides. We conclude that binding of gentamicin to its first site causes inhibition but little misreading; binding to additional site(s) partly reverses the inhibition by first-site binding and markedly stimulates misreading, and the misreading appears to favor "readthrough" of termination codons. In the third phase (greater than 100 micron) synthesis is slowed again but the pattern of misreading does not appear to be altered; this effect need not involve a specific further action on the ribosome.

摘要

已表明庆大霉素对体外天然信使介导的肽合成具有三相浓度效应。低浓度(高达2微摩尔)会导致合成速度减慢和总合成量减少,但错读现象较少(用缺乏谷氨酰胺 - tRNA的提取物进行检测);与起始系统(以噬菌体RNA作为信使)相比,在大肠杆菌纯化的内源性多聚核糖体上进行纯链延伸时,抑制作用更强。中等浓度(高达100微摩尔)对合成的减慢作用较小,在非起始系统中显著延长其持续时间,并强烈刺激错读;在最佳浓度下,总合成量甚至高于正常水平。此外,对于噬菌体RNA,这些浓度会增加大分子量多肽的合成。我们得出结论,庆大霉素与它的第一个位点结合会导致抑制,但错读现象较少;与其他位点结合会部分逆转第一位点结合所产生的抑制作用,并显著刺激错读,而且这种错读似乎有利于终止密码子的“通读”。在第三阶段(大于100微摩尔),合成再次减慢,但错读模式似乎没有改变;这种效应不一定涉及对核糖体的特定进一步作用。

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