Cirino N M, Li G, Xiao W, Torrence P F, Silverman R H
Department of Cancer Biology, Research Institute, The Cleveland Clinic Foundation, OH 44195, USA.
Proc Natl Acad Sci U S A. 1997 Mar 4;94(5):1937-42. doi: 10.1073/pnas.94.5.1937.
Treatment of human cells with 2',5' oligoadenylate covalently linked to antisense (2-5A-antisense) results in the selective cleavage of targeted RNA species by 2-5A-dependent RNase L. Here we show that 2-5A-antisense containing stabilizing modifications at both termini are effective in suppressing the replication of respiratory syncytial virus (RSV) in human tracheal epithelial cells. The affinity of 2-5A-antisense for different regions in the RSV M2 and L mRNAs was predicted from a computer-generated model of the RNA secondary structure. The most potent 2-5A-antisense molecule caused a highly effective, dose-dependent suppression of RSV yields when added to previously infected cells. In contrast, control oligonucleotides, including an inactive dimeric form of 2-5A linked to antisense, 2-5A linked to a randomized sequence of nucleotides, and antisense molecules lacking 2-5A, had minimal effects on virus replication. The specificity of this approach was shown by reverse transcriptase-coupled PCR analysis of RSV M2, P, and N mRNA and of cellular glyceraldehyde-3-phosphate dehydrogenase mRNA. The RSV M2 mRNA amounts were depleted after treating RSV-infected cells with 2-5A-antisense targeted to this mRNA, whereas the amounts of the other RNA species were unchanged. These studies demonstrate that 2',5' oligoadenylate covalently linked to antisense (2-5A-antisense) can effectively suppress RSV replication by directing the cellular RNase L to selectively degrade an essential viral mRNA.
用与反义序列共价连接的2',5'-寡腺苷酸(2-5A-反义核酸)处理人类细胞,会导致靶向RNA种类被2-5A依赖性核糖核酸酶L选择性切割。在此我们表明,在两个末端均含有稳定修饰的2-5A-反义核酸能有效抑制呼吸道合胞病毒(RSV)在人气管上皮细胞中的复制。根据计算机生成的RNA二级结构模型预测了2-5A-反义核酸对RSV M2和L mRNA不同区域的亲和力。当将最有效的2-5A-反义核酸分子添加到先前感染的细胞中时,可导致对RSV产量的高效、剂量依赖性抑制。相比之下,对照寡核苷酸,包括与反义序列连接的无活性二聚体形式的2-5A、与随机核苷酸序列连接的2-5A以及缺乏2-5A的反义分子,对病毒复制的影响极小。通过对RSV M2、P和N mRNA以及细胞甘油醛-3-磷酸脱氢酶mRNA进行逆转录酶偶联PCR分析,证明了该方法的特异性。用靶向该mRNA的2-5A-反义核酸处理RSV感染的细胞后,RSV M2 mRNA的量减少,而其他RNA种类的量未改变。这些研究表明,与反义序列共价连接的2',5'-寡腺苷酸(2-5A-反义核酸)可通过引导细胞核糖核酸酶L选择性降解一种必需的病毒mRNA,有效抑制RSV复制。