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PLoS Pathog . High-throughput super-resolution analysis of influenza virus pleomorphism reveals insights into viral spatial organization

tetano

Editor, Senior Moderator
PLoS Pathog


. 2023 Jun 30;19(6):e1011484.
doi: 10.1371/journal.ppat.1011484. Online ahead of print. High-throughput super-resolution analysis of influenza virus pleomorphism reveals insights into viral spatial organization

Andrew McMahon[SUP] 1 2 3 [/SUP], Rebecca Andrews[SUP] 3 [/SUP], Danielle Groves[SUP] 3 [/SUP], Sohail V Ghani[SUP] 3 [/SUP], Thorben Cordes[SUP] 4 [/SUP], Achillefs N Kapanidis[SUP] 1 2 [/SUP], Nicole C Robb[SUP] 1 3 [/SUP]



Affiliations
Abstract

Many viruses form highly pleomorphic particles. In influenza, virion structure is of interest not only in the context of virus assembly, but also because pleomorphic variations may correlate with infectivity and pathogenicity. We have used fluorescence super-resolution microscopy combined with a rapid automated analysis pipeline, a method well-suited to the study of large numbers of pleomorphic structures, to image many thousands of individual influenza virions; gaining information on their size, morphology and the distribution of membrane-embedded and internal proteins. We observed broad phenotypic variability in filament size, and Fourier transform analysis of super resolution images demonstrated no generalized common spatial frequency patterning of HA or NA on the virion surface, suggesting a model of virus particle assembly where the release of progeny filaments from cells occurs in a stochastic way. We also showed that viral RNP complexes are located preferentially within Archetti bodies when these were observed at filament ends, suggesting that these structures may play a role in virus transmission. Our approach therefore offers exciting new insights into influenza virus morphology and represents a powerful technique that is easily extendable to the study of pleomorphism in other pathogenic viruses.


 
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