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Induction of RNase H Activity by Arabinose-Peptide Nucleic Acid Chimeras

机译:阿拉伯糖-肽核酸嵌合体对RNA酶H活性的诱导

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摘要

We report the syntheses of chimeras of peptide nucleic acid (PNA) with DNA and 2'-deoxy 2'-fluoroarabinonucleic acid (2'-FANA). Chimeric oligomers possessing a single central PNA insert were capable of forming hybrid duplexes with complementary RNA, although with diminished thermal stability in comparison to the unmodified oligomers. We subsequently determined the ability of the DNA and 2'-FANA oligomers of mixed-base composition to elicit human RNase H1 degradation of complementary RNA that was either unstructured or as a hairpin. In the case of the more rigid FANA strand, a PNA insert led to a higher ability of the chimera to direct the degradation of both types of RNA targets. Generally, the enhancement observed was greater for a butanediol linker than for a more rigid PNA linker. Along with previous work, these studies suggest that the general flexibility associated with an acyclic insert (e.g., butyl vs PNA)-and not necessarily the presence of local structural imperfections in the heteroduplex-is beneficial for RNase H1 activity. As well, there are implications to the charge nature of non-nucleotide inserts (neutral vs negative) and their ability to maintain RNase H activity that may serve to direct further design considerations. Together, these studies support the notion that flexibility of antisense oligonucleotide (AON)/RNA hybrids is essential for high RNase H catalysis, in which an enzyme-induced altered trajectory of the bound AON/RNA substrate could facilitate optimal interaction with the catalytic site of RNase H.
机译:我们报告与DNA和2'-脱氧2'-氟阿拉伯糖核酸(2'-FANA)的肽核酸(PNA)嵌合体的合成。具有单个中央PNA插入片段的嵌合低聚物能够与互补RNA形成杂合双链体,尽管与未修饰的低聚物相比热稳定性降低。随后,我们确定了混合碱基组成的DNA和2'-FANA寡聚体引发人RNase H1降解互补RNA的能力,该互补RNA既非结构化也为发夹状。对于更刚性的FANA链,PNA插入片段导致嵌合体指导两种RNA靶标降解的更高能力。通常,丁二醇接头的观察到的增强作用大于刚性PNA接头的观察到的增强作用。与先前的工作一起,这些研究表明与无环插入物(例如,丁基vs PNA)相关的一般灵活性-不一定是异源双链体中存在局部结构缺陷-对RNase H1活性有利。同样,对于非核苷酸插入片段的电荷性质(中性与阴性)及其维持RNase H活性的能力也有影响,这可能会指导进一步的设计考虑。总之,这些研究支持以下观点:反义寡核苷酸(AON)/ RNA杂合体的灵活性对于高RNase H催化至关重要,在这种酶中,酶诱导的结合AON / RNA底物的变化轨迹可以促进与RNA催化位点的最佳相互作用RNaseH。

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