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Published on: November 12, 2015
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
Background:
Human adenoviruses (HAdV) are causing a broad spectrum of diseases. One of the most severe forms of adenovirus infection is a disseminated disease resulting in significant morbidity and mortality. Several reports in recent years have identified HAdV-31 from species A (HAdV-A31) as a cause of disseminated disease in children following haematopoetic stem cell transplantation (hSCT) and liver transplantation. We sequenced and analyzed the complete genome of the HAdV-A31 prototype strain to uncover unique sequence motifs associated with its high virulence. Moreover, we sequenced coding regions known to be essential for tropism and virulence (early transcription units E1A, E3, E4, the fiber knob and the penton base) of HAdV-A31 clinical isolates from patients with disseminated disease.
Results:
The genome size of HAdV-A31 is 33763 base pairs (bp) in length with a GC content of 46.36%. Nucleotide alignment to the closely related HAdV-A12 revealed an overall homology of 84.2%. The genome organization into early, intermediate and late regions is similar to HAdV-A12. Sequence analysis of the prototype strain showed unique sequence features such as an immunoglobulin-like domain in the species A specific gene product E3 CR1 beta and a potentially integrin binding RGD motif in the C-terminal region of the protein IX. These features were conserved in all analyzed clinical isolates. Overall, amino acid sequences of clinical isolates were highly conserved compared to the prototype (99.2 to 100%), but a synonymous/non synonymous ratio (S/N) of 2.36 in E3 CR1 beta suggested positive selection.
Conclusion:
Unique sequence features of HAdV-A31 may enhance its ability to escape the host's immune surveillance and may facilitate a promiscuous tropism for various tissues. Moderate evolution of clinical isolates did not indicate the emergence of new HAdV-A31 subtypes in the recent years.
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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