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Complemented Palindromic Small RNAs First Discovered from SARS Coronavirus

机译:首次从SARS冠状病毒中发现互补的回文小RNA

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In this study, we report for the first time the existence of complemented palindromic small RNAs (cpsRNAs) and propose that cpsRNAs and palindromic small RNAs (psRNAs) constitute a novel class of small RNAs. The first discovered 19-nt cpsRNA UUAACAAGCUUGUUAAAGA, named SARS-CoV-cpsR-19, was detected from a 22-bp DNA complemented palindrome TCTTTAACAAGCTTGTTAAAGA in the severe acute respiratory syndrome coronavirus (SARS-CoV) genome. The phylogenetic analysis supported that this DNA complemented palindrome originated from bat betacoronavirus. The results of RNA interference (RNAi) experiments showed that one 19-nt segment corresponding to SARS-CoV-cpsR-19 significantly induced cell apoptosis. Using this joint analysis of the molecular function and phylogeny, our results suggested that SARS-CoV-cpsR-19 could play a role in SARS-CoV infection or pathogenesis. The discovery of cpsRNAs has paved a way to find novel markers for pathogen detection and to reveal the mechanisms underlying infection or pathogenesis from a different point of view. Researchers can use cpsRNAs to study the infection or pathogenesis of pathogenic viruses when these viruses are not available. The discovery of psRNAs and cpsRNAs, as a novel class of small RNAs, also inspire researchers to investigate DNA palindromes and DNA complemented palindromes with lengths of psRNAs and cpsRNAs in viral genomes.
机译:在这项研究中,我们首次报告了互补回文小RNA(cpsRNA)的存在,并提出cpsRNA和回文小RNA(psRNA)构成了一类新颖的小RNA。在严重急性呼吸系统综合症冠状病毒(SARS-CoV)基因组中,从22 bp DNA互补回文序列TCTTTAACAAGCTTGTTAAAGA中检测到第一个被发现的19-nt cpsRNA UUAACAAGCUUGUUAAAGA,名为SARS-CoV-cpsR-19。系统发育分析支持该DNA互补回文来自蝙蝠β冠状病毒。 RNA干扰(RNAi)实验的结果表明,对应于SARS-CoV-cpsR-19的一个19-nt片段显着诱导了细胞凋亡。通过对分子功能和系统发育的联合分析,我们的结果表明SARS-CoV-cpsR-19可能在SARS-CoV感染或发病中起作用。 cpsRNA的发现铺平了一条途径,可以找到用于病原体检测的新标记,并从不同的角度揭示感染或致病机理。当病原病毒无法获得时,研究人员可以使用cpsRNA来研究它们的感染或发病机理。 psRNA和cpsRNA作为一类新型的小RNA的发现,也启发研究人员研究病毒基因组中长度为psRNA和cpsRNA的DNA回文和DNA互补回文。

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