Borda Emily J, Sigurdsson Snorri Th
Department of Chemistry, University of Washington Seattle, WA 98195-1700, USA.
Nucleic Acids Res. 2005 Feb 18;33(3):1058-68. doi: 10.1093/nar/gki237. Print 2005.
We have used photo-crosslinking to investigate the structure and dynamics of four-way junction hairpin ribozyme constructs. Four phenylazide photo-crosslinkers were coupled to 2'-NH2-modified U+2 in the substrate and irradiated at different Mg2+ concentrations and temperatures. Consistent with the role of divalent metal ions in hairpin ribozyme folding, we observed more interdomain crosslinks in the presence of Mg2+ than in its absence. In general, we observed intradomain crosslinks to nucleotides 2-11 and interdomain crosslinks to the U1A binding loop. Crosslinks to A26 and G36 in domain B were also observed when crosslinking was carried out at -78 degrees C. In contrast to crosslinking results at higher temperatures (0, 25 and 37 degrees C), similar crosslinks were obtained in the presence and absence of Mg2+ at -78 degrees C, suggesting Mg2+ stabilizes a low-energy hairpin ribozyme conformation. We also evaluated the effects of photo-crosslinker structure and mechanism on crosslinks. First, most crosslinks were to unpaired nucleotides. Second, shorter and longer photo-crosslinkers formed crosslinks to intradomain locations nearer to and farther from photo-crosslinker modification, respectively. Finally, fluorine substitutions on the phenylazide ring did not change the locations of crosslinks, but rather decreased crosslinking efficiency. These findings have implications for the use of phenylazide photo-crosslinkers in structural studies of RNA.
我们利用光交联技术研究了四向连接发夹状核酶构建体的结构和动力学。四个苯基叠氮光交联剂与底物中2'-NH2修饰的U+2偶联,并在不同的Mg2+浓度和温度下进行辐照。与二价金属离子在发夹状核酶折叠中的作用一致,我们观察到在有Mg2+存在时比没有Mg2+时更多的结构域间交联。一般来说,我们观察到结构域内与核苷酸2-11的交联以及结构域间与U1A结合环的交联。当在-78℃下进行交联时,还观察到与结构域B中的A26和G36的交联。与较高温度(0、25和37℃)下的交联结果相反,在-78℃下有和没有Mg2+时都获得了相似的交联,这表明Mg2+稳定了低能量的发夹状核酶构象。我们还评估了光交联剂结构和机制对交联的影响。首先,大多数交联是与未配对的核苷酸。其次,较短和较长的光交联剂分别与距离光交联剂修饰较近和较远的结构域内位置形成交联。最后,苯基叠氮环上的氟取代并没有改变交联的位置,而是降低了交联效率。这些发现对苯基叠氮光交联剂在RNA结构研究中的应用具有启示意义。