Hill Alyssa C, Schroeder Susan J
Department of Microbiology and Plant Biology.
Department of Chemistry and Biochemistry, University of Oklahoma, Norman, Oklahoma 73019, USA.
RNA. 2017 Apr;23(4):521-529. doi: 10.1261/rna.059220.116. Epub 2017 Jan 9.
The thermodynamic stabilities of four natural prohead or packaging RNA (pRNA) three-way junction (3WJ) nanomotifs and seven phi29 pRNA 3WJ deletion mutant nanomotifs were investigated using UV optical melting on a three-component RNA system. Our data reveal that some pRNA 3WJs are more stable than the phi29 pRNA 3WJ. The stability of the 3WJ contributes to the unique self-assembly properties of pRNA. Thus, ultrastable pRNA 3WJ motifs suggest new scaffolds for pRNA-based nanotechnology. We present data demonstrating that pRNA 3WJs differentially respond to the presence of metal ions. A comparison of our data with free energies predicted by currently available RNA secondary structure prediction programs shows that these programs do not accurately predict multibranch loop stabilities. These results will expand the existing parameters used for RNA secondary structure prediction from sequence in order to better inform RNA structure-function hypotheses and guide the rational design of functional RNA supramolecular assemblies.
利用紫外光热变性技术,在一个三组分RNA系统中研究了四种天然前头部或包装RNA(pRNA)三向接头(3WJ)纳米基序以及七种phi29 pRNA 3WJ缺失突变纳米基序的热力学稳定性。我们的数据表明,一些pRNA 3WJ比phi29 pRNA 3WJ更稳定。3WJ的稳定性有助于pRNA独特的自组装特性。因此,超稳定的pRNA 3WJ基序为基于pRNA的纳米技术提供了新的支架。我们提供的数据表明,pRNA 3WJ对金属离子的存在有不同的反应。将我们的数据与目前可用的RNA二级结构预测程序预测的自由能进行比较,结果表明这些程序不能准确预测多分支环的稳定性。这些结果将扩展现有的用于从序列预测RNA二级结构的参数,以便更好地为RNA结构-功能假说提供信息,并指导功能性RNA超分子组装体的合理设计。