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亚精胺在真核无细胞系统中提高多肽合成的保真度。

Increase of fidelity of polypeptide synthesis by spermidine in eukaryotic cell-free systems.

作者信息

Igarashi K, Hashimoto S, Miyake A, Kashiwagi K, Hirose S

出版信息

Eur J Biochem. 1982 Nov 15;128(2-3):597-604. doi: 10.1111/j.1432-1033.1982.tb07006.x.

Abstract

The mechanism of spermidine-induced increase of fidelity of polypeptide synthesis in a wheat germ cell-free system has been studied. It was found that the increase of fidelity in the presence of spermidine occurred mainly at the level of binding of aminoacyl-tRNA to ribosomes, that reduction of misreading was more marked at the 5'-base than at the 3'-base of the codon and that misreading caused by paromomycin and kanamycin C was not significantly decreased by spermidine. It was deduced from these results that spermidine inhibited low-frequency misreading more strongly than high-frequency misreading. In addition, spermidine was found to stimulate the rejection of non-cognate aminoacyl-tRNA mainly at an initial discrimination step during the binding of amino-acyl-tRNA to ribosomes, and slightly at a subsequent GTP-dependent discrimination step, the so-called proofreading step. In yeast, rabbit reticulocyte, and Artemia salina cell-free systems, spermidine was found to increase the fidelity of protein synthesis.

摘要

已对亚精胺诱导小麦胚无细胞系统中多肽合成保真度增加的机制进行了研究。结果发现,在亚精胺存在下保真度的增加主要发生在氨酰 - tRNA与核糖体结合的水平,密码子5'端碱基处的错读减少比3'端碱基处更明显,并且巴龙霉素和卡那霉素C引起的错读并未因亚精胺而显著降低。从这些结果推断,亚精胺抑制低频错读比高频错读更强。此外,发现亚精胺主要在氨酰 - tRNA与核糖体结合的初始识别步骤刺激非同源氨酰 - tRNA的排斥,在随后的GTP依赖性识别步骤(即所谓的校对步骤)中刺激作用较弱。在酵母、兔网织红细胞和卤虫无细胞系统中,发现亚精胺可提高蛋白质合成的保真度。

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