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Dual miRNases for Triple Incision of miRNA Target: Design Concept and Catalytic Performance

机译:用于miRNA目标三重切口的双重miRNase:设计概念和催化性能

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摘要

Irreversible destruction of disease-associated regulatory RNA sequences offers exciting opportunities for safe and powerful therapeutic interventions against human pathophysiology. In 2017, for the first time we introduced miRNAses–miRNA-targeted conjugates of a catalytic peptide and oligonucleotide capable of cleaving an miRNA target. Herein, we report the development of Dual miRNases against oncogenic miR-21, miR-155, miR-17 and miR-18a, each containing the catalytic peptide placed in-between two short miRNA-targeted oligodeoxyribonucleotide recognition motifs. Substitution of adenines with 2-aminoadenines in the sequence of oligonucleotide “shoulders” of the Dual miRNase significantly enhanced the efficiency of hybridization with the miRNA target. It was shown that sequence-specific cleavage of the target by miRNase proceeded metal-independently at pH optimum 5.5–7.5 with an efficiency varying from 15% to 85%, depending on the miRNA sequence. A distinct advantage of the engineered nucleases is their ability to additionally recruit RNase H and cut miRNA at three different locations. Such cleavage proceeds at the central part by Dual miRNase, and at the 5′- and 3′-regions by RNase H, which significantly increases the efficiency of miRNA degradation. Due to increased activity at lowered pH Dual miRNases could provide an additional advantage in acidic tumor conditions and may be considered as efficient tumor-selective RNA-targeted therapeutic.
机译:与疾病相关的调节性RNA序列的不可逆破坏为安全有效的针对人类病理生理学的治疗性干预提供了令人兴奋的机会。在2017年,我们首次引入了miRNAses –靶向miRNA的催化肽和能够切割miRNA靶标的寡核苷酸的偶联物。在此,我们报告了针对致癌miR-21,miR-155,miR-17和miR-18a的Dual miRNase的发展,每个都包含置于两个短miRNA靶向的寡脱氧核糖核苷酸识别基序之间的催化肽。在Dual miRNase的寡核苷酸“肩膀”序列中,将2-氨基腺嘌呤取代为腺嘌呤可显着提高与miRNA靶标杂交的效率。结果表明,miRNA酶可在pH最佳5.5-7.5的条件下独立于靶标进行序列特异性切割,其效率在15%至85%之间变化,具体取决于miRNA序列。工程核酸酶的显着优势是它们能够额外募集RNase H并在三个不同位置切割miRNA的能力。这种切割通过双重miRNase在中央部分进行,而通过RNase H在5'-和3'-区域进行,这显着提高了miRNA降解的效率。由于在降低的pH值下活性增加,Dual miRNases在酸性肿瘤条件下可以提供额外的优势,并且可以被视为有效的针对肿瘤的RNA靶向治疗药物。

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