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Rabouw, H. H.

Publications and source records attributed to Rabouw, H. H..

2 recordsLinked to original sources

Heterogeneity in viral replication dynamics shapes the antiviral response

In response to virus infection, host cells can activate antiviral signaling to restrict virus replication and communicate viral infection to neighboring cells. For poorly understood reasons, antiviral response activation is highly heterogeneous among infected cells; both quantitatively (level of pathway activation) and qualitatively (transcribed antiviral gene set). Here, we used live-cell single-molecule imaging to simultaneously visualize viral infection and antiviral signaling, providing quantitative insights into antiviral response activation in single cells; first, the probability of activating an antiviral response varies throughout infection, with most efficient activation occurring several hours after the first viral replication. Second, cell-to-cell heterogeneity in viral replication rates early in infection determine the efficiency of antiviral response activation. Finally, variation in signaling strength of the viral sensing pathway result in qualitatively distinct antiviral responses. Together, this works identifies key parameters that shape the antiviral response and provides quantitative insights into the origin of heterogeneity in the antiviral response.

immunology↗

The encephalomyocarditis virus Leader promotes the release of virions inside extracellular vesicles via the induction of secretory autophagy

Naked viruses can escape host cells before the induction of lysis via release in extracellular vesicles (EVs). These nanosized EVs cloak the secreted virus particles in a host-derived membrane, which alters virus-host interactions that affect infection efficiency and antiviral immunity. Currently, little is known about the viral and host factors regulating this form of virus release. Here, we assessed the role of picornavirus security proteins by studying the encephalomyocarditis virus (EMCV) Leader protein. EV release upon infection with wildtype virus or a Leader-deficient mutant was characterized at the single particle level using high-resolution flow cytometry. Inactivation of the Leader abolished EV induction during infection and strongly reduced EV-enclosed virus release. We demonstrate that the Leader promotes the release of virions within EVs by stimulating a secretory arm of autophagy. This newly discovered role of the EMCV Leader adds to the variety of mechanisms via which this protein affects virus-host interactions. Moreover, these data provide first evidence for a crucial role of non-structural viral proteins in the non-lytic release of picornaviruses via packaging in EVs.

cell biology↗