Bellur Deepti L, Woodson Sarah A
Program in Cell, Molecular and Developmental Biology and Biophysics, Johns Hopkins University, Baltimore, MD 21218-2685, USA.
Nucleic Acids Res. 2009 Apr;37(6):1886-96. doi: 10.1093/nar/gkp036. Epub 2009 Feb 3.
Primary ribosomal protein S4 is essential for 30S ribosome biogenesis in eubacteria, because it nucleates subunit assembly and helps coordinate assembly with the synthesis of its rRNA and protein components. S4 binds a five-helix junction (5WJ) that bridges the 5' and 3' ends of the 16S 5' domain. To delineate which nucleotides contribute to S4 recognition, sequential deletions of the 16S 5' domain were tested in competitive S4-binding assays based on electrophoretic mobility shifts. S4 binds the minimal 5WJ RNA containing just the five-helix junction as well or better than with affinity comparable to or better than the 5' domain or native 16S rRNA. Internal deletions and point mutations demonstrated that helices 3, 4, 16 and residues at the helix junctions are necessary for S4 binding, while the conserved helix 18 pseudoknot is dispensable. Hydroxyl radical footprinting and chemical base modification showed that S4 makes the same interactions with minimal rRNA substrates as with the native 16S rRNA, but the minimal substrates are more pre-organized for binding S4. Together, these results suggest that favorable interactions with S4 offset the energetic penalty for folding the 16S rRNA.
原核生物中的核糖体蛋白S4对于30S核糖体的生物合成至关重要,因为它能启动亚基组装,并有助于协调组装过程与其rRNA和蛋白质组分的合成。S4结合一个五螺旋连接体(5WJ),该连接体桥接16S 5'结构域的5'和3'末端。为了确定哪些核苷酸有助于S4识别,在基于电泳迁移率变动的竞争性S4结合试验中测试了16S 5'结构域的连续缺失。S4与仅包含五螺旋连接体的最小5WJ RNA结合的效果与结合5'结构域或天然16S rRNA相当或更好。内部缺失和点突变表明,螺旋3、4、16以及螺旋连接处的残基对于S4结合是必需的,而保守的螺旋18假结则是可有可无的。羟基自由基足迹法和化学碱基修饰表明,S4与最小rRNA底物的相互作用与与天然16S rRNA的相互作用相同,但最小底物与S4结合时的预组织程度更高。这些结果共同表明,与S4的有利相互作用抵消了16S rRNA折叠时的能量代价。