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嗜热栖热菌核糖体蛋白S15的16S rRNA结合位点:与大肠杆菌S15的比较、最小位点及结构

The 16S rRNA binding site of Thermus thermophilus ribosomal protein S15: comparison with Escherichia coli S15, minimum site and structure.

作者信息

Serganov A A, Masquida B, Westhof E, Cachia C, Portier C, Garber M, Ehresmann B, Ehresmann C

机构信息

Institute of Protein Research, Pushchino, Moscow, Russia.

出版信息

RNA. 1996 Nov;2(11):1124-38.

Abstract

Binding of Escherichia coli and Thermus thermophilus ribosomal proteins S15 to a 16S ribosomal RNA fragment from T. thermophilus (nt 559-753) has been investigated in detail by extensive deletion analysis, filter-binding assays, gel mobility shift, structure probing, footprinting with chemical, enzymatic, and hydroxyl radical probes. Both S15 proteins recognize two distinct sites. The first one maps in the bottom of helix 638-655/717-734 (H22) and in the three-way junction between helix 560-570/737-747 (H20), helix 571-600/606-634 (H21), and H22. The second is located in a conserved purine-rich region in the center of H22. The first site provides a higher contribution to the free energy of binding than the second one, and both are required for efficient binding. A short RNA fragment of 56 nt containing these elements binds S15 with high affinity. The structure of the rRNA is constrained by the three-way junction and requires both magnesium and S15 to be stabilized. A 3D model, derived by computer modeling with the use of experimental data, suggests that the bound form adopts a Y-shaped conformation, with a quasi-coaxial stacking of H22 on H20, and H21 forming an acute angle with H22. In this model, S15 binds to the shallow groove of the RNA on the exterior side of the Y-shaped structure, making contact with the two sites, which are separated by one helix turn.

摘要

通过广泛的缺失分析、滤膜结合测定、凝胶迁移率变动分析、结构探测以及使用化学、酶和羟基自由基探针进行足迹分析,对大肠杆菌和嗜热栖热菌核糖体蛋白S15与嗜热栖热菌16S核糖体RNA片段(核苷酸559 - 753)的结合进行了详细研究。两种S15蛋白都识别两个不同的位点。第一个位点位于螺旋638 - 655/717 - 734(H22)的底部以及螺旋560 - 570/737 - 747(H20)、螺旋571 - 600/606 - 634(H21)和H22之间的三向连接处。第二个位点位于H22中心的一个保守的富含嘌呤区域。第一个位点对结合自由能的贡献比第二个位点更大,且两者对于有效结合都是必需的。一个包含这些元件的56个核苷酸的短RNA片段以高亲和力结合S15。rRNA的结构受到三向连接处的限制,并且需要镁和S15才能稳定。通过利用实验数据进行计算机建模得出的三维模型表明,结合形式采用Y形构象,H22在H20上准同轴堆积,H21与H22形成锐角。在这个模型中,S15结合到Y形结构外侧RNA的浅沟中,与被一个螺旋圈隔开的两个位点接触。

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