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Inhibition of MDR1 expression with altritol-modified siRNAs

机译:麦芽糖醇修饰的siRNA抑制MDR1表达

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摘要

Altritol-modified nucleic acids (ANAs) support RNA-like A-form structures when included in oligonucleotide duplexes. Thus altritol residues seem suitable as candidates for the chemical modification of siRNAs. Here we report that ANA-modified siRNAs targeting the MDR1 gene can exhibit improved efficacy as compared to unmodified controls. This was particularly true of ANA modifications at or near the 3' end of the sense or antisense strands, while modification at the 5' end of the antisense strand resulted in complete loss of activity. Multiple ANA modifications within the sense strand were also well tolerated. Duplexes with ANA modifications at appropriate positions in both strands were generally more effective than duplexes with one modified and one unmodified strand. Initial evidence suggests that the loss of activity associated with ANA modification of the 5'-antisense strand may be due to reduced phosphorylation at this site by cellular kinases. Treatment of drug resistant cells with MDR1-targeted siRNAs resulted in reduction of P-glycoprotein (Pgp) expression, parallel reduction in MDR1 message levels, increased accumulation of the Pgp substrate rhodamine 123, and reduced resistance to anti-tumor drugs. Interestingly, the duration of action of some of the ANA-modified siRNAs was substantially greater than that of unmodified controls. These observations suggest that altritol modifications may be helpful in developing siRNAs with enhanced pharmacological effectiveness.
机译:当包含在寡核苷酸双链体中时,麦芽糖醇修饰的核酸(ANAs)支持RNA样A型结构。因此,糖醇残基似乎适合作为siRNAs化学修饰的候选物。在这里,我们报道靶向MDR1基因的ANA修饰siRNA与未修饰的对照相比可以表现出更高的功效。对于在有义或反义链的3'末端或附近的ANA修饰,尤其如此,而在反义链的5'末端的修饰导致活性完全丧失。有义链内的多种ANA修饰也被很好地耐受。在两条链的适当位置处都具有ANA修饰的双链体通常比具有一条修饰的链和一条未修饰的链的双链体更有效。初步证据表明,与5'-反义链的ANA修饰相关的活性丧失可能是由于细胞激酶在该位点的磷酸化水平降低。用靶向MDR1的siRNA处理耐药细胞会导致P-糖蛋白(Pgp)表达减少,MDR1信息水平平行下降,Pgp底物若丹明123的积累增加以及对抗肿瘤药物的耐药性降低。有趣的是,某些经ANA修饰的siRNA的作用持续时间明显大于未修饰的对照。这些观察结果表明,糖醇修饰可能有助于开发具有增强药理作用的siRNA。

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