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Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination

The genome of hepatitis delta virus (HDV) is a 1.7-kb single-stranded circular RNA that folds into an unbranched rod-like structure and has ribozyme activity. HDV redirects host RNA polymerase(s) (RNAP) to perform viral RNA-directed RNA transcription. RNA recombination is known to contribute to the...

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Autores principales: Chao, Mei, Wang, Tzu-Chi, Lin, Chia-Chi, Yung-Liang Wang, Robert, Lin, Wen-Bin, Lee, Shang-En, Cheng, Ying-Yu, Yeh, Chau-Ting, Iang, Shan-Bei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617389/
https://www.ncbi.nlm.nih.gov/pubmed/28977829
http://dx.doi.org/10.18632/oncotarget.18339
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author Chao, Mei
Wang, Tzu-Chi
Lin, Chia-Chi
Yung-Liang Wang, Robert
Lin, Wen-Bin
Lee, Shang-En
Cheng, Ying-Yu
Yeh, Chau-Ting
Iang, Shan-Bei
author_facet Chao, Mei
Wang, Tzu-Chi
Lin, Chia-Chi
Yung-Liang Wang, Robert
Lin, Wen-Bin
Lee, Shang-En
Cheng, Ying-Yu
Yeh, Chau-Ting
Iang, Shan-Bei
author_sort Chao, Mei
collection PubMed
description The genome of hepatitis delta virus (HDV) is a 1.7-kb single-stranded circular RNA that folds into an unbranched rod-like structure and has ribozyme activity. HDV redirects host RNA polymerase(s) (RNAP) to perform viral RNA-directed RNA transcription. RNA recombination is known to contribute to the genetic heterogeneity of HDV, but its molecular mechanism is poorly understood. Here, we established a whole-genome HDV-1/HDV-4 recombination map using two cloned sequences coexisting in cultured cells. Our functional analyses of the resulting chimeric delta antigens (the only viral-encoded protein) and recombinant genomes provide insights into how recombination promotes the genotypic and phenotypic diversity of HDV. Our examination of crossover distribution and subsequent mutagenesis analyses demonstrated that ribozyme activity on HDV genome, which is required for viral replication, also contributes to the generation of an inter-clade junction. These data provide circumstantial evidence supporting our contention that HDV RNA recombination occurs via a replication-dependent mechanism. Furthermore, we identify an intrinsic asymmetric bulge on the HDV genome, which appears to promote recombination events in the vicinity. We therefore propose a mammalian RNAP-driven and viral-RNA-structure-promoted template-switching mechanism for HDV genetic recombination. The present findings improve our understanding of the capacities of the host RNAP beyond typical DNA-directed transcription.
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spelling pubmed-56173892017-10-03 Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination Chao, Mei Wang, Tzu-Chi Lin, Chia-Chi Yung-Liang Wang, Robert Lin, Wen-Bin Lee, Shang-En Cheng, Ying-Yu Yeh, Chau-Ting Iang, Shan-Bei Oncotarget Research Paper: Immunology The genome of hepatitis delta virus (HDV) is a 1.7-kb single-stranded circular RNA that folds into an unbranched rod-like structure and has ribozyme activity. HDV redirects host RNA polymerase(s) (RNAP) to perform viral RNA-directed RNA transcription. RNA recombination is known to contribute to the genetic heterogeneity of HDV, but its molecular mechanism is poorly understood. Here, we established a whole-genome HDV-1/HDV-4 recombination map using two cloned sequences coexisting in cultured cells. Our functional analyses of the resulting chimeric delta antigens (the only viral-encoded protein) and recombinant genomes provide insights into how recombination promotes the genotypic and phenotypic diversity of HDV. Our examination of crossover distribution and subsequent mutagenesis analyses demonstrated that ribozyme activity on HDV genome, which is required for viral replication, also contributes to the generation of an inter-clade junction. These data provide circumstantial evidence supporting our contention that HDV RNA recombination occurs via a replication-dependent mechanism. Furthermore, we identify an intrinsic asymmetric bulge on the HDV genome, which appears to promote recombination events in the vicinity. We therefore propose a mammalian RNAP-driven and viral-RNA-structure-promoted template-switching mechanism for HDV genetic recombination. The present findings improve our understanding of the capacities of the host RNAP beyond typical DNA-directed transcription. Impact Journals LLC 2017-06-01 /pmc/articles/PMC5617389/ /pubmed/28977829 http://dx.doi.org/10.18632/oncotarget.18339 Text en Copyright: © 2017 Chao et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Immunology
Chao, Mei
Wang, Tzu-Chi
Lin, Chia-Chi
Yung-Liang Wang, Robert
Lin, Wen-Bin
Lee, Shang-En
Cheng, Ying-Yu
Yeh, Chau-Ting
Iang, Shan-Bei
Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title_full Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title_fullStr Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title_full_unstemmed Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title_short Analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral RNA structure-promoted template-switching mechanism for viral RNA recombination
title_sort analyses of a whole-genome inter-clade recombination map of hepatitis delta virus suggest a host polymerase-driven and viral rna structure-promoted template-switching mechanism for viral rna recombination
topic Research Paper: Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617389/
https://www.ncbi.nlm.nih.gov/pubmed/28977829
http://dx.doi.org/10.18632/oncotarget.18339
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