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Bacterial RecA protein promotes adenoviral recombination during in vitro infection

  • Jeong Yoon Lee
  • , Ji Sun Lee
  • , Emma C. Materne
  • , Rahul Rajala
  • , Ashrafali M. Ismail
  • , Donald Seto
  • , David W. Dyer
  • , Jaya Rajaiya*
  • , James Chodosh*
  • *Corresponding author for this work
  • Harvard University
  • University of Oklahoma
  • George Mason University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Adenovirus infections in humans are common and sometimes lethal. Adenovirus-derived vectors are also commonly chosen for gene therapy in human clinical trials. We have shown in previous work that homologous recombination between adenoviral genomes of human adenovirus species D (HAdV-D), the largest and fastest growing HAdV species, is responsible for the rapid evolution of this species. Because adenovirus infection initiates in mucosal epithelia, particularly at the gastrointestinal, respiratory, genitourinary, and ocular surfaces, we sought to determine a possible role for mucosal microbiota in adenovirus genome diversity. By analysis of known recombination hot spots across 38 human adenovirus genomes in species D (HAdV-D), we identified nucleotide sequence motifs similar to bacterial Chi sequences, which facilitate homologous recombination in the presence of bacterial Rec enzymes. These motifs, referred to here as ChiAD, were identified immediately 5' to the sequence encoding penton base hypervariable loop 2, which expresses the arginine-glycine-aspartate moiety critical to adenoviral cellular entry. Coinfection with two HAdV-Ds in the presence of an Escherichia coli lysate increased recombination; this was blocked in a RecA mutant strain, E. coli DH5α, or upon RecA depletion. Recombination increased in the presence of E. coli lysate despite a general reduction in viral replication. RecA colocalized with viral DNA in HAdV-D-infected cell nuclei and was shown to bind specifically to ChiAD sequences. These results indicate that adenoviruses may repurpose bacterial recombination machinery, a sharing of evolutionary mechanisms across a diverse microbiota, and unique example of viral commensalism.

Original languageEnglish
Article numbere00105-18
JournalmSphere
Volume3
Issue number3
DOIs
StatePublished - 2018.05.1

Keywords

  • Adenoviruses
  • Commensal
  • Homologous recombination

Quacquarelli Symonds(QS) Subject Topics

  • Biological Sciences

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