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酵母中的蛋白质合成。编码延伸因子3的基因的结构与功能分析。

Protein synthesis in yeast. Structural and functional analysis of the gene encoding elongation factor 3.

作者信息

Sandbaken M G, Lupisella J A, DiDomenico B, Chakraburtty K

机构信息

Department of Biochemistry, Medical College of Wisconsin, Milwaukee 53226.

出版信息

J Biol Chem. 1990 Sep 15;265(26):15838-44.

PMID:2203789
Abstract

The yeast translational elongation factor 3 (EF-3) stimulates EF-1 alpha-dependent binding of aminoacyl-tRNA by the ribosome. The requirement for EF-3 is unique to fungi; a functional analog has not been found in prokaryotes or other eukaryotes. We have isolated and characterized the structural gene, YEF3, that encodes EF-3. The YEF3 gene is present in one copy/haploid genome and is essential for vegetative growth. DNA sequence analysis revealed that the YEF3 gene contains an open reading frame of 1044 codons. The deduced amino acid sequence contains two repeats of a nucleotide-binding motif, which is similar to the nucleotide-binding consensus sequences of hydrophilic, membrane-associated ATPases. EF-3 catalyzes ATP hydrolysis in a ribosome-dependent manner. A modified assay procedure has been developed that allows measurement of the ATP hydrolytic activity of EF-3 in cell-free extracts without interference by other nucleotide hydrolyase activities. Using this modified assay, we have shown that the wild-type YEF3 gene restores heat stable EF-3 activity in a yeast strain containing a temperature-sensitive EF-3. Introduction of the YEF3 gene on a high copy number plasmid into yeast strains increases the ribosome-dependent ATPase activity. The level of EF-3 protein is also increased 3-5-fold. Elevated EF-3 protein levels did not cause a significant increase in EF-1 alpha and EF-2 protein. Yeast strains containing elevated EF-3 protein levels are more sensitive to the aminoglycoside antibiotics hygromycin and paromomycin. These drugs are known to increase translational errors. This observation suggests that EF-3 may indirectly affect translational accuracy.

摘要

酵母翻译延伸因子3(EF-3)可刺激核糖体依赖于EF-1α的氨酰tRNA结合。对EF-3的需求是真菌所特有的;在原核生物或其他真核生物中尚未发现功能类似物。我们已经分离并鉴定了编码EF-3的结构基因YEF3。YEF3基因以单拷贝/单倍体基因组形式存在,对营养生长至关重要。DNA序列分析表明,YEF3基因包含一个1044个密码子的开放阅读框。推导的氨基酸序列包含核苷酸结合基序的两个重复序列,这与亲水性膜相关ATP酶的核苷酸结合共有序列相似。EF-3以核糖体依赖的方式催化ATP水解。已经开发出一种改良的测定方法,可在无细胞提取物中测量EF-3的ATP水解活性,而不受其他核苷酸水解酶活性的干扰。使用这种改良测定方法,我们已经表明,野生型YEF3基因可在含有温度敏感型EF-3的酵母菌株中恢复热稳定的EF-3活性。将高拷贝数质粒上的YEF3基因导入酵母菌株可增加核糖体依赖的ATP酶活性。EF-3蛋白水平也提高了3至5倍。EF-3蛋白水平升高并未导致EF-1α和EF-2蛋白显著增加。含有升高的EF-3蛋白水平的酵母菌株对氨基糖苷类抗生素潮霉素和巴龙霉素更敏感。已知这些药物会增加翻译错误。这一观察结果表明,EF-3可能间接影响翻译准确性。

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