Department of Chemistry and Biochemistry, University of California, San Diego, California 92093, USA.
RNA. 2012 Mar;18(3):590-602. doi: 10.1261/rna.029884.111. Epub 2012 Jan 24.
Group I introns have been engineered into trans-splicing ribozymes capable of replacing the 3'-terminal portion of an external mRNA with their own 3'-exon. Although this design makes trans-splicing ribozymes potentially useful for therapeutic application, their trans-splicing efficiency is usually too low for medical use. One factor that strongly influences trans-splicing efficiency is the position of the target splice site on the mRNA substrate. Viable splice sites are currently determined using a biochemical trans-tagging assay. Here, we propose a rapid and inexpensive alternative approach to identify efficient splice sites. This approach involves the computation of the binding free energies between ribozyme and mRNA substrate. We found that the computed binding free energies correlate well with the trans-splicing efficiency experimentally determined at 18 different splice sites on the mRNA of chloramphenicol acetyl transferase. In contrast, our results from the trans-tagging assay correlate less well with measured trans-splicing efficiency. The computed free energy components suggest that splice site efficiency depends on the following secondary structure rearrangements: hybridization of the ribozyme's internal guide sequence (IGS) with mRNA substrate (most important), unfolding of substrate proximal to the splice site, and release of the IGS from the 3'-exon (least important). The proposed computational approach can also be extended to fulfill additional design requirements of efficient trans-splicing ribozymes, such as the optimization of 3'-exon and extended guide sequences.
I 型内含子已被设计成反式剪接核酶,能够用自身的 3' 外显子替换外源性 mRNA 的 3' 末端部分。虽然这种设计使反式剪接核酶在治疗应用中具有潜在的用途,但它们的反式剪接效率通常太低而无法用于医疗用途。影响反式剪接效率的一个重要因素是 mRNA 底物上靶剪接位点的位置。目前,有活力的剪接位点是通过生化反式标记测定法来确定的。在这里,我们提出了一种快速且廉价的替代方法来识别有效的剪接位点。这种方法涉及计算核酶与 mRNA 底物之间的结合自由能。我们发现,计算得到的结合自由能与在氯霉素乙酰转移酶 mRNA 的 18 个不同剪接位点上实验确定的反式剪接效率有很好的相关性。相比之下,我们的反式标记测定法的结果与测量的反式剪接效率相关性较差。计算得到的自由能成分表明,剪接位点的效率取决于以下二级结构重排:核酶的内部引导序列(IGS)与 mRNA 底物的杂交(最重要)、靠近剪接位点的底物解链以及 IGS 从 3' 外显子释放(最不重要)。所提出的计算方法还可以扩展到满足高效反式剪接核酶的其他设计要求,例如 3' 外显子和扩展引导序列的优化。