修饰的10-23脱氧核酶介导HPV-16 E6/E7 mRNA的切割。

Pablo Reyes-Gutiérrez, Luis M Alvarez-Salas
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引用次数: 23

摘要

脱氧核酶(DXZs)是一种小的寡脱氧核苷酸,能够以序列特异性的方式介导靶RNA的磷酸二酯键切割。这些分子是新一代的人工催化核酸,目前用于沉默许多疾病相关基因。本研究描述了一种DXZ (Dz1023-434)靶向宫颈癌主要病原人乳头瘤病毒16型(HPV-16) E6和E7基因的多顺反子mRNA。即使在低[Mg(2+)]条件下,Dz1023-434也能有效地切割HPV-16 E6/E7 mRNA中nt 410-445的真实反义窗口。以遗传分析为指导,我们在Dz1023-434催化核心中引入了多种化学修饰,得到了一个稳定的锁定核酸修饰的DXZ (Dz434-LNA),具有明显的E6/E7转录本的裂解活性。Dz434-LNA的细胞培养测试在hpv -16阳性细胞中产生E6/E7 mRNA水平的急剧下降,导致增殖下降和大量细胞死亡,并以特异性和剂量依赖性的方式发生。无活性或混乱的对照DXZs和使用hpv阴性细胞均未观察到显著影响,提示催化依赖性和高特异性。Dz434-LNA的生物学效应提示其可能用于宫颈癌的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cleavage of HPV-16 E6/E7 mRNA mediated by modified 10-23 deoxyribozymes.

Deoxyribozymes (DXZs) are small oligodeoxynucleotides capable of mediating phosphodiester bond cleavage of a target RNA in a sequence-specific manner. These molecules are a new generation of artificial catalytic nucleic acids currently used to silence many disease-related genes. The present study describes a DXZ (Dz1023-434) directed against the polycistronic mRNA from the E6 and E7 genes of human papillomavirus type 16 (HPV-16), the main etiological agent of cervical cancer. Dz1023-434 showed efficient cleavage against a bona fide antisense window at nt 410-445 within HPV-16 E6/E7 mRNA even in low [Mg(2+)] conditions. Using a genetic analysis as guidance, we introduced diverse chemical modifications within Dz1023-434 catalytic core to produce a stable locked nucleic acid (LNA)-modified DXZ (Dz434-LNA) with significant cleavage activity of full E6/E7 transcripts. Cell culture testing of Dz434-LNA produced a sharp decrement of E6/E7 mRNA levels in HPV-16-positive cells resulting in decreased proliferation and considerable cell death in a specific and dose-dependent manner. No significant effects were observed with inactive or scrambled control DXZs nor from using HPV-negative cells, suggesting catalysis-dependent effect and high specificity. The biological effects of Dz434-LNA suggest a potential use for the treatment of cervical cancer.

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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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