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RNase P-mediated inhibition of cytomegalovirus protease expression and viral DNA encapsidation by oligonucleotide external guide sequences

机译:RNase P介导的巨细胞病毒蛋白酶抑制 寡核苷酸外部表达和病毒DNA衣壳化 指导序列

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摘要

External guide sequences (EGSs) are oligonucleotides that consist of a sequence complementary to a target mRNA and recruit intracellular RNase P for specific degradation of the target RNA. In this study, DNA-based EGS molecules were chemically synthesized to target the mRNA coding for the protease of human cytomegalovirus (HCMV). The EGS molecules efficiently directed human RNase P to cleave the target mRNA sequence in vitro. When EGSs were exogenously administered into HCMV-infected human foreskin fibroblasts, a reduction of about 80–90% in the expression level of the protease and a reduction of about 300-fold in HCMV growth were observed in the cells that were treated with a functional EGS, but not in cells that were not treated with the EGS or with a “disabled” EGS carrying nucleotide mutations that precluded RNase P recognition. Moreover, packaging of the viral DNA genome into the capsid was blocked in the cells treated with the functional EGS. These results indicate that HCMV protease is essential for viral DNA encapsidation. Moreover, our study provides direct evidence that exogenous administration of a DNA-based EGS can be used as a therapeutic approach for inhibiting gene expression and replication of a human virus.
机译:外部指导序列(EGS)是寡核苷酸,由与靶mRNA互补的序列组成,并募集细胞内RNase P用于靶RNA的特异性降解。在这项研究中,化学合成了基于DNA的EGS分子,以靶向编码人巨细胞病毒(HCMV)蛋白酶的mRNA。 EGS分子有效地指导人类RNase P在体外裂解靶标mRNA序列。当将EGSs外源施用到感染了HCMV的人包皮成纤维细胞中时,在经功能性处理的细胞中,可观察到蛋白酶表达水平降低约80-90%,HCMV生长降低约300倍EGS,但未在未经过EGS或未带有携带RNase P识别的核苷酸突变的“残疾” EGS处理的细胞中。此外,在用功能性EGS处理的细胞中,病毒DNA基因组包装入衣壳中被阻断。这些结果表明HCMV蛋白酶对于病毒DNA衣壳化是必不可少的。此外,我们的研究提供了直接证据,证明基于DNA的EGS的外源给药 可用作抑制基因表达的治疗方法 和人类病毒的复制。

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