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核糖体蛋白S4中的一种新型突变,影响突变型RF1的功能。

A novel mutation in ribosomal protein S4 that affects the function of a mutated RF1.

作者信息

Dahlgren A, Rydén-Aulin M

机构信息

Department of Microbiology, Stockholm University, 106 91, Stockholm, Sweden.

出版信息

Biochimie. 2000 Aug;82(8):683-91. doi: 10.1016/s0300-9084(00)01160-3.

Abstract

Release factors (RF) 1 and 2 trigger the hydrolysis of the peptide from the peptidyl-tRNA during translation termination. RF1 binds to the ribosome in response to the stop codons UAG and UAA, whereas RF2 recognizes UAA and UGA. RF1 and RF2 have been shown to bind to several ribosomal proteins. To study this interaction in vivo, prfA1, a mutant form of RF1 has been used. A strain with the prfA1 mutation is temperature sensitive (Ts) for growth at 42 degrees C and shows an increased misreading of UAG and UAA. In this work we show that a point mutation in ribosomal protein S4 can, on the one hand, make the RF1 mutant strain Ts(+); on the other hand, this mutation increases the misreading of UAG, but not UAA, caused by prfA1. The S4 mutant allele, rpsD101, is a missense mutation (Tyr51 to Asp), which makes the cell cold sensitive. The behaviour of rpsD101 was compared to the well-studied S4 alleles rpsD12, rpsD14, and rpsD16. These three mutations all confer both a Ts (44 degrees C) phenotype and show a ribosomal ambiguity phenotype, which rpsD101 does not. The three alleles were sequenced and shown to be truncations of the S4 protein. None of the three mutations could compensate for the Ts phenotype caused by the prfA1 mutation. Hence, rpsD101 differs in all studied characteristics from the three above mentioned S4 mutants. Because rpsD101 can compensate for the Ts phenotype caused by prfA1 but enhances the misreading of UAG and not UAA, we suggest that S4 influences the interaction of RF1 with the decoding center of the ribosome and that the Ts phenotype is not a consequence of increased readthrough.

摘要

释放因子(RF)1和2在翻译终止过程中触发肽从肽基 - tRNA上的水解。RF1响应终止密码子UAG和UAA与核糖体结合,而RF2识别UAA和UGA。已证明RF1和RF2可与多种核糖体蛋白结合。为了在体内研究这种相互作用,使用了RF1的突变形式prfA1。携带prfA1突变的菌株在42℃下生长对温度敏感(Ts),并且对UAG和UAA的错读增加。在这项工作中,我们表明核糖体蛋白S4中的一个点突变一方面可以使RF1突变菌株变为Ts(+);另一方面,该突变增加了由prfA1引起的UAG而非UAA的错读。S4突变等位基因rpsD101是一个错义突变(Tyr51突变为Asp),这使得细胞对冷敏感。将rpsD101的行为与研究充分的S4等位基因rpsD12、rpsD14和rpsD16进行了比较。这三个突变都赋予了Ts(44℃)表型并表现出核糖体模糊表型,而rpsD101没有。对这三个等位基因进行了测序,结果显示它们是S4蛋白的截短形式。这三个突变均不能补偿由prfA1突变引起的Ts表型。因此,rpsD101在所有研究特征上与上述三个S4突变体不同。由于rpsD101可以补偿由prfA1引起的Ts表型,但增强了UAG而非UAA的错读,我们认为S4影响RF1与核糖体解码中心的相互作用,并且Ts表型不是通读增加的结果。

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