Unique sequence features of the Human adenovirus 31 complete genomic sequence are conserved in clinical isolates

Soeren Hofmayer1, Ijad Madisch, Sebastian Darr

  • 1Institut für Virologie, Medizinische Hochschule Hannover, Hannover, Germany. mail@s-hofmayer.de

BMC Genomics
|November 27, 2009
PubMed
Abstract

Insights

Human adenovirus-31 (HAdV-A31) causes severe disseminated disease in transplant patients. Unique genomic features in HAdV-A31 may enhance immune evasion and tissue tropism, contributing to its virulence.

Area of Science:

  • Virology
  • Genomics
  • Infectious Diseases

Background:

  • Human adenoviruses (HAdV) cause various diseases, with disseminated infections leading to severe outcomes.
  • Human adenovirus-31 (HAdV-A31) is increasingly identified as a cause of disseminated disease in pediatric transplant recipients.
  • Understanding HAdV-A31 virulence factors is crucial for managing severe adenovirus infections.

Purpose of the Study:

  • To sequence and analyze the complete genome of the HAdV-A31 prototype strain.
  • To identify unique sequence motifs associated with HAdV-A31's high virulence.
  • To investigate virulence-associated coding regions in clinical HAdV-A31 isolates.

Main Methods:

  • Whole-genome sequencing of the HAdV-A31 prototype strain.
  • Comparative nucleotide alignment with closely related HAdV species.
  • Sequence analysis of key virulence genes (E1A, E3, E4, fiber knob, penton base) in clinical isolates.

Main Results:

  • The HAdV-A31 genome is 33,763 bp with 46.36% GC content and 84.2% homology to HAdV-A12.
  • Unique features include an immunoglobulin-like domain in E3 CR1 beta and an RGD motif in protein IX.
  • Clinical isolates showed high amino acid conservation (99.2-100%) with the prototype, but E3 CR1 beta exhibited positive selection (S/N ratio of 2.36).

Conclusions:

  • HAdV-A31 possesses unique sequence features potentially enhancing immune evasion and broad tissue tropism.
  • These features likely contribute to the observed high virulence and disseminated disease.
  • Analysis suggests limited recent evolution, indicating no emergence of new HAdV-A31 subtypes.

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