Modulation of 16S rRNA function by ribosomal protein S12

Anton Vila-Sanjurjo , Ying Lu , Jamie L. Aragonez , Rebekah E. Starkweather , Manoj Sasikumar , Michael O'Connor
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引用次数: 37

Abstract

Ribosomal protein S12 is a critical component of the decoding center of the 30S ribosomal subunit and is involved in both tRNA selection and the response to streptomycin. We have investigated the interplay between S12 and some of the surrounding 16S rRNA residues by examining the phenotypes of double-mutant ribosomes in strains of Escherichia coli carrying deletions in all chromosomal rrn operons and expressing total rRNA from a single plasmid-borne rrn operon. We show that the combination of S12 and otherwise benign mutations at positions C1409–G1491 in 16S rRNA severely compromises cell growth while the level and range of aminoglycoside resistances conferred by the G1491U/C substitutions is markedly increased by a mutant S12 protein. The G1491U/C mutations in addition confer resistance to the unrelated antibiotic, capreomycin. S12 also interacts with the 912 region of 16S rRNA. Genetic selection of suppressors of streptomycin dependence caused by mutations at proline 90 in S12 yielded a C912U substitution in 16S rRNA. The C912U mutation on its own confers resistance to streptomycin and restricts miscoding, properties that distinguish it from a majority of the previously described error-promoting ram mutants that also reverse streptomycin dependence.

核糖体蛋白S12对16S rRNA功能的调控
核糖体蛋白S12是30S核糖体亚基解码中心的关键组成部分,参与tRNA选择和对链霉素的反应。我们通过检测携带所有染色体rrn操纵子缺失的大肠杆菌菌株中双突变核糖体的表型,并从单个质粒携带的rrn操纵子中表达总rRNA,研究了S12与周围一些16S rRNA残基之间的相互作用。我们发现,16S rRNA中C1409-G1491位置的S12和其他良性突变的组合严重损害了细胞生长,而G1491U/C取代所带来的氨基糖苷抗性水平和范围被突变的S12蛋白显著增加。G1491U/C突变还赋予了对不相关的抗生素卷曲霉素的耐药性。S12也与16S rRNA的912区相互作用。对S12中脯氨酸90突变引起的链霉素依赖抑制基因进行遗传选择,在16S rRNA中产生C912U替代。C912U突变本身赋予了对链霉素的抗性并限制了错误编码,这些特性将其与之前描述的大多数促进错误的公羊突变区分开来,公羊突变也逆转了链霉素的依赖性。
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