The potency of siRNA-mediated growth inhibition following silencing of essential genes is dependent on siRNA design and varies with target sequence.

Rachna Patel, Natacha Coppieters T'wallant, Michael H Herbert, Damian White, J Greg Murison, Glen Reid
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引用次数: 10

Abstract

Silencing genes essential for replication and division using siRNA has potential as a therapeutic strategy for cancer treatment. In order to identify the most potent siRNA, target sequence and siRNA design must be considered together, as tolerance for structural changes can be sequence-dependent. Here we have used growth inhibition assays to investigate the effects of silencing of RRM1, RRM2, and PLK1 with standard siRNAs, Stealth() duplexes, and Dicer substrate siRNAs. The growth inhibitory effect of RRM1, RRM2, or PLK1 knockdown in A549 cells varied with mRNA target site and the format of the siRNA, with longer modified siRNAs generally more effective than standard siRNAs specific for the same target site. Standard siRNAs of varying activity became more potent inhibitors of growth when converted to Stealth() duplexes, and the increase in activity was due to a combination of chemical modification and length. In each case, the effect on activity of changing the siRNA format depended on the siRNA sequence. Taken together these results suggest that, in vitro, longer siRNAs with chemical modifications are in general more active than standard siRNAs targeting the same site, and that structure, chemical modification, and target site must be considered together to identify the most active siRNAs.

沉默重要基因后,siRNA 介导的生长抑制效力取决于 siRNA 的设计,并因靶序列而异。
使用 siRNA 沉默复制和分裂所必需的基因有可能成为一种治疗癌症的策略。为了确定最有效的 siRNA,必须同时考虑目标序列和 siRNA 设计,因为对结构变化的耐受性可能取决于序列。在这里,我们用生长抑制实验研究了标准 siRNA、Stealth()双链和 Dicer 底物 siRNA 沉默 RRM1、RRM2 和 PLK1 的效果。在A549细胞中敲除RRM1、RRM2或PLK1对生长的抑制作用因mRNA靶位点和siRNA的形式而异,较长的修饰siRNA通常比特异于同一靶位点的标准siRNA更有效。将不同活性的标准 siRNA 转换成 Stealth() 双链体后,对细胞生长的抑制作用更强,活性的提高是化学修饰和长度共同作用的结果。在每种情况下,改变 siRNA 格式对活性的影响取决于 siRNA 序列。总之,这些结果表明,在体外,经过化学修饰的长 siRNA 一般比靶向相同位点的标准 siRNA 更有活性,而且必须同时考虑结构、化学修饰和靶向位点才能确定最有活性的 siRNA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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