CNRS UMR5048, Centre de Biochimie Structurale, 29 rue de Navacelles, 34090 Montpellier, France; INSERM U1054, 34090 Montpellier, France.
Nucleic Acids Res. 2013 Feb 1;41(4):2632-43. doi: 10.1093/nar/gks1315. Epub 2013 Jan 8.
The control of transcription termination by RNA-binding proteins that modulate RNA-structures is an important regulatory mechanism in bacteria. LicT and SacY from Bacillus subtilis prevent the premature arrest of transcription by binding to an anti-terminator RNA hairpin that overlaps an intrinsic terminator located in the 5'-mRNA leader region of the gene to be regulated. In order to investigate the molecular determinants of this anti-termination/termination balance, we have developed a fluorescence-based nucleic acids system that mimics the competition between the LicT or SacY anti-terminator targets and the overlapping terminators. Using Förster Resonance Energy Transfer on single diffusing RNA hairpins, we could monitor directly their opening or closing state, and thus investigate the effects on this equilibrium of the binding of anti-termination proteins or terminator-mimicking oligonucleotides. We show that the anti-terminator hairpins adopt spontaneously a closed structure and that their structural dynamics is mainly governed by the length of their basal stem. The induced stability of the anti-terminator hairpins determines both the affinity and specificity of the anti-termination protein binding. Finally, we show that stabilization of the anti-terminator hairpin, by an extended basal stem or anti-termination protein binding can efficiently counteract the competing effect of the terminator-mimic.
RNA 结合蛋白通过调节 RNA 结构来控制转录终止是细菌中一种重要的调控机制。枯草芽孢杆菌中的 LicT 和 SacY 通过结合一个与位于被调控基因 5'-mRNA 前导区的内在终止子重叠的反终止 RNA 发夹,防止转录过早停止。为了研究这种反终止/终止平衡的分子决定因素,我们开发了一种基于荧光的核酸系统,模拟 LicT 或 SacY 反终止靶标与重叠终止子之间的竞争。我们使用Förster 共振能量转移(Förster Resonance Energy Transfer)对单个扩散的 RNA 发夹进行直接监测,从而可以直接监测其打开或关闭状态,并研究反终止蛋白或终止子模拟寡核苷酸结合对这种平衡的影响。我们表明,反终止子发夹自发地采用封闭结构,其结构动力学主要由其基本茎的长度决定。反终止子发夹的诱导稳定性决定了反终止蛋白结合的亲和力和特异性。最后,我们表明,通过扩展基本茎或反终止蛋白结合来稳定反终止子发夹可以有效地抵消终止子模拟物的竞争效应。