Human parvovirus B19 utilizes cellular DNA replication machinery for viral DNA replication

Wei Zou, Zekun Wang, Min Xiong, Aaron Yun Chen, Peng Xu, Safder S. Ganaie, Yomna Badawi, Steve Kleiboeker, Hiroshi Nishimune, Shui Qing Ye, Jianming Qiu

Research output: Contribution to journalArticlepeer-review

45 Scopus citations

Abstract

Human parvovirus B19 (B19V) infection of human erythroid progenitor cells (EPCs) induces a DNA damage response and cell cycle arrest at late S phase, which facilitates viral DNA replication. However, it is not clear exactly which cellular factors are employed by this single-stranded DNA virus. Here, we used microarrays to systematically analyze the dynamic transcriptome of EPCs infected with B19V. We found that DNA metabolism, DNA replication, DNA repair, DNA damage response, cell cycle, and cell cycle arrest pathways were significantly regulated after B19V infection. Confocal microscopy analyses revealed that most cellular DNA replication proteins were recruited to the centers of viral DNA replication, but not the DNA repair DNA polymerases. Our results suggest that DNA replication polymerase δ and polymerase α are responsible for B19V DNA replication by knocking down its expression in EPCs. We further showed that although RPA32 is essential for B19V DNA replication and the phosphorylated forms of RPA32 colocalized with the replicating viral genomes, RPA32 phosphorylation was not necessary for B19V DNA replication. Thus, this report provides evidence that B19V uses the cellular DNA replication machinery for viral DNA replication.

Original languageEnglish
Article numbere01881-17
JournalJournal of virology
Volume92
Issue number5
DOIs
StatePublished - Mar 1 2018

Keywords

  • DNA replication
  • Parvovirus
  • Parvovirus B19

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