scholarly journals Phylogeny and primary structure analysis of fiber shafts of all human adenovirus types for rational design of adenoviral gene-therapy vectors

2009 ◽  
Vol 90 (12) ◽  
pp. 2849-2854 ◽  
Author(s):  
Sebastian Darr ◽  
Ijad Madisch ◽  
Sören Hofmayer ◽  
Fabienne Rehren ◽  
Albert Heim

The fiber shaft of human adenoviruses (HAdVs) is essential for bringing the penton base into proximity to the secondary cellular receptor. Fiber shaft sequences of all 53 HAdV types were studied. Phylogeny of the fiber shaft revealed clustering corresponding to the HAdV species concept. An intraspecies recombination hot spot was found at the shaft/knob boundary, a highly conserved sequence stretch. For example, HAdV-D20 clustered with HAdV-D23 in the fiber shaft, but with HAdV-D47 in the fiber knob. Although all shafts exhibited the typical pseudorepeats, amino acid sequence identity was found to be as high as 92 % (interspecies) and 54 % (intraspecies). In contrast to a previous study, a flexibility motif (KXGGLXFD/N) was found in eight HAdV-D types, whereas the putative heparan sulfate-binding site (KKTK) was only found in species HAdV-C. Our results suggest that pseudotyping of gene-therapy vectors at the shaft/knob boundary is feasible, but that flexibility data of shafts should be considered.

2009 ◽  
Vol 92 (3) ◽  
pp. S123
Author(s):  
E.-E.R. Othman ◽  
D. Hornung ◽  
B. El-Helw ◽  
H.A. El-Maghraby ◽  
D.T. Curiel ◽  
...  

2009 ◽  
Vol 83 (17) ◽  
pp. 8980-8985 ◽  
Author(s):  
Christopher M. Robinson ◽  
Jaya Rajaiya ◽  
Michael P. Walsh ◽  
Donald Seto ◽  
David W. Dyer ◽  
...  

ABSTRACT Recombination in human adenoviruses (HAdV) may confer virulence upon an otherwise nonvirulent strain. The genome sequence of species D HAdV type 22 (HAdV-D22) revealed evidence for recombination with HAdV-D19 and HAdV-D37 within the capsid penton base gene. Bootscan analysis demonstrated that recombination sites within the penton base gene frame the coding sequences for the two external hypervariable loops in the protein. A similar pattern of recombination was evident within other HAdV-D types but not other HAdV species. Further study of recombination among HAdVs is needed to better predict possible recombination events among wild-type viruses and adenoviral gene therapy vectors.


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