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酵母tRNA中的尿苷-33对琥珀抑制作用并非必不可少。

Uridine-33 in yeast tRNA not essential for amber suppression.

作者信息

Bare L, Bruce A G, Gesteland R, Uhlenbeck O C

出版信息

Nature. 1983;305(5934):554-6. doi: 10.1038/305554a0.

Abstract

The nucleotide at position 33 on the 5' side of the anticodon of almost all tRNAs is a uridine. Crystallographic studies of different tRNAs reveal that although the precise orientation of uridine-33 is not always the same, it connects the anticodon stacked along the 3' side of the loop with the pyrimidine-32 stacked on the 5' side of the loop. The remarkably conserved nature of uridine-33 and its unique position in the anticodon loop structure has led to suggestions that this nucleotide has an essential role in the translational mechanism. We have developed a biochemical procedure to replace nucleotides 33-35 in yeast tRNATyr with any desired sequence and used it to construct amber suppressor tRNAs having different nucleotides at position 33. As all of these synthetic amber suppressor tRNAs functioned well in eukaryotic in vitro suppression assays, we conclude that uridine-33 does not have an obligatory role in the translation mechanism.

摘要

几乎所有tRNA反密码子5'端第33位的核苷酸都是尿苷。对不同tRNA的晶体学研究表明,虽然尿苷-33的精确取向并不总是相同,但它将沿着环3'侧堆叠的反密码子与堆叠在环5'侧的嘧啶-32连接起来。尿苷-33显著的保守性质及其在反密码子环结构中的独特位置,使得有人提出该核苷酸在翻译机制中具有重要作用。我们开发了一种生化方法,可将酵母tRNATyr中的核苷酸33-35替换为任何所需序列,并用于构建在第33位具有不同核苷酸的琥珀抑制tRNA。由于所有这些合成的琥珀抑制tRNA在真核体外抑制试验中都能很好地发挥作用,我们得出结论,尿苷-33在翻译机制中没有必需作用。

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