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Substitutions of stem-loop subdomains in internal ribosome entry site of Senecavirus A:Impacts on rescue of sequence-modifying viruses
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作者 Qianqian Wang Jie Wang +5 位作者 Lei Zhang Xiaoxiao Duan Lijie Zhu Youming Zhang Yan Li Fuxiao Liu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第7期2391-2406,共16页
Senecavirus A(SVA)has a positive-sense,single-stranded RNA genome.Its 5´untranslated region harbors an internal ribosome entry site(IRES),comprising 10 larger or smaller stem-loop structures(including a pseudokno... Senecavirus A(SVA)has a positive-sense,single-stranded RNA genome.Its 5´untranslated region harbors an internal ribosome entry site(IRES),comprising 10 larger or smaller stem-loop structures(including a pseudoknot)that have been demonstrated to be well conserved.However,it is still unclear whether each stem-loop subdomain,such as a single stem or loop,is also highly conserved.To clarify this issue in the present study,a set of 29 SVA cDNA clones were constructed by site-directed mutagenesis(SDM)on the IRES.The SDM-modified scenarios included:(1)stem-formed complementary sequences exchanging with each other;(2)loop transversion;(3)loop transition;and(4)point mutations.All cDNA clones were separately transfected into cells for rescuing viable viruses,whereas only four SVAs of interest could be recovered,and were genetically stable during 20 passages.One progeny grew significantly slower than the other three did.The dual-luciferase reporter assay showed that none of the SDM-modified IRESes significantly inhibited the IRES activity.Our previous study indicated that a single motif from any of the ten stem structures,if completely mutated,would cause the failure of virus recovery.Interestingly,our present study revealed three stem structures,whose individual complementary sequences could exchange with each other to rescue sequence-modifying SVAs.Moreover,one apical loop was demonstrated to have the ability to tolerate its own full-length transition,also having no impact on the recovery of sequence-modifying SVA.The present study suggested that not every stem-loop structure was strictly conserved in its conformation,while the full-length IRES itself was well conserved.This provides a new research direction on interaction between the IRES and many factors. 展开更多
关键词 SVA hcv ires hcv-like ires stem-loop structure cDNA clone virus rescue mutation
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Human DNA contains sequences homologous to the 5'-non-coding region of hepatitis C virus: characterization with restriction endonucleases reveals individual varieties 被引量:1
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作者 Reinhard H Dennin Jianer Wo 《Chinese Medical Journal》 SCIE CAS CSCD 2003年第7期1092-1098,共7页
Objective To investigate a 272 base pair section of the 5' non coding region of genomic DNA from the peripheral blood monounuclear cells of healthy hepatitis virus C (HCV) negative human subjects (not patien... Objective To investigate a 272 base pair section of the 5' non coding region of genomic DNA from the peripheral blood monounuclear cells of healthy hepatitis virus C (HCV) negative human subjects (not patients) Mothods This sequence section bears interest because ① it harbors several potential methylation (Cp rich) sites, and ② it represents the largest part of its internal ribosomal entry site A pre PCR digestion protocol was established making consistent use of four restriction endonucleases selected for certain features: SmaI, XmaCI, MspI, and HpaII are inhibited if methylation(s) are present at certain cytosines within their cutting sequences Results The suspected HCV specific sequence was found in the DNA of each subject tested The pre PCR digestion assay reveals individual differences in their pattern of methylation, which may be due to possible epigenetic phenomena Conclusions The results provide formal proof that these HCV specific sequences are contained in the genomic or extra chromosomal target DNA, and probably belong to a new class of endogenous sequences 展开更多
关键词 hcv sequences · 5' NCR · ires · human DNA · restriction endonucleases · methylation · epigenetic phenomena
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