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30S ribosomal subunits can be assembled in vivo without primary binding ribosomal protein S15

机译:30S核糖体亚基可在体内组装,而无需初级结合核糖体蛋白S15

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摘要

Assembly of 30S ribosomal subunits from Escherichia coli has been dissected in detail using an in vitro system. Such studies have allowed characterization of the role for ribosomal protein S15 in the hierarchical assembly of 30S subunits; S15 is a primary binding protein that orchestrates the assembly of ribosomal proteins S6, S11, S18, and S21 with the central domain of 16S ribosomal RNA to form the platform of the 30S subunit. In vitro S15 is the sole primary binding protein in this cascade, performing a critical role during assembly of these four proteins. To investigate the role of S15 in vivo, the essential nature of rpsO, the gene encoding S15, was examined. Surprisingly, E. coli with an in-frame deletion of rpsO are viable, although at 37 degrees C this Delta rpsO strain has an exaggerated doubling time compared to its parental strain. In the absence of S15, the remaining four platform proteins are assembled into ribosomes in vivo, and the overall architecture of the 30S subunits formed in the DrpsO strain at 37 degrees C is not altered. Nonetheless, 30S subunits lacking S15 appear to be somewhat defective in subunit association in vivo and in vitro. In addition, this strain is cold sensitive, displaying a marked ribosome biogenesis defect at low temperature, suggesting that under nonideal conditions S15 is critical for assembly. The viability of this strain indicates that in vivo functional populations of 70S ribosomes must form in the absence of S15 and that 30S subunit assembly has a plasicity that has not previously been revealed or characterized.
机译:已经使用体外系统详细剖析了来自大肠杆菌的30S核糖体亚基的组装。这样的研究可以表征核糖体蛋白S15在30S亚基的层次装配中的作用。 S15是主要的结合蛋白,可协调核糖体蛋白S6,S11,S18和S21与16S核糖体RNA的中央结构域的组装,形成30S亚基的平台。体外S15是该级联反应中唯一的主要结合蛋白,在这四种蛋白的组装过程中起着至关重要的作用。为了研究S15在体内的作用,检查了编码S15的基因rpsO的基本性质。出乎意料的是,具有框内缺失rpsO的大肠杆菌是可行的,尽管在37摄氏度下该Delta rpsO菌株与其亲本菌株相比具有夸大的倍增时间。在没有S15的情况下,剩余的四个平台蛋白在体内被组装成核糖体,并且在37摄氏度的DrpsO菌株中形成的30S亚基的总体结构没有改变。然而,缺乏S15的30S亚基在体内和体外在亚基缔合方面似乎有些缺陷。此外,该菌株对冷敏感,在低温下显示出明显的核糖体生物发生缺陷,表明在非理想条件下,S15对于组装至关重要。该菌株的生存能力表明,必须在不存在S15的情况下形成70S核糖体的体内功能性群体,并且30S亚基装配体具有以前没有发现或表征的可能性。

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