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Generation of stable 3′-mRNA cleavage fragments induced by siRNA in cells with high-levels of duck hepatitis B virus replication
Authors:Lin Lan  Qing Mao  Hubert E Blum
Institution:1. Department of Infectious Diseases, Southwestern Hospital, Third Military Medical University, Chongqing 400038, China;2. Department of Medicine II, University Hospital Freiburg, Freiburg D-79104, Germany
Abstract:Therapeutic small interfering RNAs (siRNAs) have attracted a lot of interest both in basic biomedical sciences as well as in translational medicine. Apart from their therapeutic efficacy adverse effects of siRNAs must be addressed. The generation of stable mRNA cleavage fragments and the translation of N-truncated proteins induced by antisense oligodeoxynucleotides (ASOs) have been reported. Similar to ASOs, siRNAs are considered to function via an antisense mechanism that promotes the cleavage of the target mRNA. To further investigate whether the stable mRNA cleavage fragments also occur in siRNA we constructed a short hairpin RNA (shRNA) expression plasmid, pshRNA794, containing the same sequence reported in experiments using ASOs which directly targeted the overlapping region of the pre-genomic mRNA (pgmRNA) and sub-genomic mRNA (sgmRNA) of duck hepatitis B virus (DHBV). The shRNA resulted in a 70.9% and 69.9% reduction of the DHBV mRNAs in LMH and HuH-7 cells, respectively. In addition a 70% inhibition of the DHBV DNA level was observed. Interestingly, 3′-mRNA cleavage fragments were detected in LMH but not in HuH-7 cells. Taken together, our findings demonstrate that the ASO sequence was also effective in siRNA. Importantly, our results provide direct evidence that stable 3′-mRNA fragments were generated by siRNA in cells with high levels of DHBV replication. Whether these can cause adverse RNAi effects needs to be explored further.
Keywords:siRNA  small interfering RNA  ASOs  antisense oligodeoxynucleotides  shRNA  short hairpin RNA  DHBV  Duck hepatitis B virus  pgmRNA  pre-genomic mRNA  sgmRNA  sub-genomic mRNA  RISC  RNA-induced silencing complex  miRNA  microRNA  POL  polymerase  RC  relaxed circular  SS  single stranded
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