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Disease-Causing Allele-Specific Silencing by RNA Interference

机译:RNA干扰导致疾病的等位基因特异性沉默

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摘要

Small double-stranded RNAs (dsRNAs) of approximately 21-nucleotides in size, referred to as small interfering RNA (siRNA) duplexes, can induce sequence-specific posttranscriptional gene silencing, or RNA interference (RNAi). Since chemically synthesized siRNA duplexes were found to induce RNAi in mammalian cells, RNAi has become a powerful reverse genetic tool for suppressing the expression of a gene of interest in mammals, including human, and its application has been expanding to various fields. Recent studies further suggest that synthetic siRNA duplexes have the potential for specifically inhibiting the expression of an allele of interest without suppressing the expression of other alleles, i.e., siRNA duplexes likely confer allele-specific silencing. Such gene silencing by RNAi is an advanced technique with very promising applications. In this review, I would like to discuss the potential utility of allele-specific silencing by RNAi as a therapeutic method for dominantly inherited diseases, and describe possible improvements in siRNA duplexes for enhancing their efficacy.
机译:大小约为21个核苷酸的小双链RNA(dsRNA),称为小干扰RNA(siRNA)双链体,可诱导序列特异性转录后基因沉默或RNA干扰(RNAi)。自从发现化学合成的siRNA双链体可在哺乳动物细胞中诱导RNAi以来,RNAi已成为一种强大的逆向遗传工具,可抑制包括人类在内的哺乳动物感兴趣基因的表达,其应用已扩展到各个领域。最近的研究进一步表明,合成的siRNA双链体具有特异性抑制目的等位基因表达而不抑制其他等位基因表达的潜力,即,siRNA双链体可能赋予等位基因特异性沉默。 RNAi的这种基因沉默是一项非常有前途的应用的先进技术。在这篇综述中,我想讨论RNAi等位基因特异性沉默作为优势遗传疾病的治疗方法的潜在实用性,并描述siRNA双链体可能的改进以增强其功效。

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