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Stabilization mechanism accommodating genome length variation in evolutionarily related viral capsids

Nature Communications. 2025-04; 
Jennifer M. Podgorski, Joshua Podgorski, Lawrence Abad, Deborah Jacobs-Sera, Krista G. Freeman, Colin Brown, Graham F. Hatfull, Antoni Luque & Simon J. White University of Connecticut
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摘要

Tailed bacteriophages are one of the most numerous and diverse group of viruses. They store their genome at quasi-crystalline densities in capsids built from multiple copies of proteins adopting the HK97-fold. The high density of the genome exerts an internal pressure, requiring a maturation process that reinforces their capsids. However, it is unclear how capsid stabilization strategies have adapted to accommodate the evolution of larger genomes in this virus group. Here we characterize a capsid reinforcement mechanism in two evolutionary-related actinobacteriophages that modifies the length of a stabilization protein to accommodate a larger genome while maintaining the same capsid size. We use cryo-EM to reve... More

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