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首页> 外文期刊>Nucleic Acid Therapeutics >Rational Truncation of an RNA Aptamer to Prostate-Specific Membrane Antigen Using Computational Structural Modeling
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Rational Truncation of an RNA Aptamer to Prostate-Specific Membrane Antigen Using Computational Structural Modeling

机译:RNA适体的前列腺癌特异性膜抗原的截断使用计算结构模型。

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摘要

RNA aptamers represent an emerging class of pharmaceuticals with great potential for targeted cancer diagnostics and therapy. Several RNA aptamers that bind cancer cell-surface antigens with high affinity and specificity have been described. However, their clinical potential has yet to be realized. A significant obstacle to the clinical adoption of RNA aptamers is the high cost of manufacturing long RNA sequences through chemical synthesis. Therapeutic aptamers are often truncated postselection by using a trial-and- error process, which is time consuming and inefficient. Here, we used a "rational truncation'' approach guided by RNA structural prediction and protein/RNA docking algorithms that enabled us to substantially truncateA9, an RNA aptamer to prostate-specific membrane antigen (PSMA), with great potential for targeted therapeutics. This truncated PSMA aptamer (A9L; 41mer) retains binding activity, functionality, and is amenable to large-scale chemical synthesis for future clinical applications. In addition, the modeled RNA tertiary structure and protein/RNA docking predictions revealed key nucleotides within the aptamer critical for binding to PSMA and inhibiting its enzymatic activity. Finally, this work highlights the utility of existing RNA structural prediction and protein docking techniques that may be generally applicable to developing RNA aptamers optimized for therapeutic use.
机译:RNA适体代表了新兴的一类药物,在靶向癌症诊断和治疗方面具有巨大潜力。已经描述了以高亲和力和特异性结合癌细胞表面抗原的几种RNA适体。但是,它们的临床潜力尚未实现。临床上采用RNA适体的一个重大障碍是通过化学合成生产长RNA序列的高成本。治疗性适体通常通过使用反复试验过程而在选择后被截断,这既耗时又效率低下。在这里,我们使用了一种基于RNA结构预测和蛋白质/ RNA对接算法指导的“合理截断”方法,这使我们能够对t9进行截短,A9是一种针对前列腺特异性膜抗原(PSMA)的RNA适体,具有针对性靶向治疗的巨大潜力。截短的PSMA适体(A9L; 41mer)保留了结合活性,功能性,并适于大规模化学合成,以供将来临床应用;此外,建模的RNA三级结构和蛋白质/ RNA对接预测揭示了适体中的关键核苷酸对最后,这项工作突出了现有RNA结构预测和蛋白质对接技术的实用性,这些技术通常可用于开发针对治疗用途优化的RNA适体。

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