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Activation of NIX-mediated mitophagy and replication by an interferon regulatory factor homologue of human herpesvirus

Mai Tram Vo, Barbara J Smith, John Nicholas, View ORCID ProfileYoung Bong Choi
doi: https://doi.org/10.1101/506113
Mai Tram Vo
Johns Hopkins University School of Medicine
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Barbara J Smith
Johns Hopkins University School of Medicine
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John Nicholas
Johns Hopkins University School of Medicine
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Young Bong Choi
Johns Hopkins University School of Medicine
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  • ORCID record for Young Bong Choi
  • For correspondence: ychoi15@jhmi.edu
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Abstract

Viral control of mitochondrial quality and content has emerged as an important mechanism for counteracting the host response to virus infection. Despite the knowledge of this crucial function of some viruses, little is known about how herpesviruses regulate mitochondrial homeostasis during infection. Human herpesvirus 8 (HHV-8) is an oncogenic virus causally related to AIDS-associated malignancies. Here, we found that HHV-8-encoded viral interferon regulatory factor 1 (vIRF-1) promotes mitochondrial clearance by activating mitophagy to support virus replication. Genetic interference with vIRF-1 expression or targeting to the mitochondria inhibits HHV-8 replication-induced mitophagy and leads to an accumulation of mitochondria. Moreover, vIRF-1 binds directly to a mitophagy receptor, NIX, on the mitochondria and activates NIX-mediated mitophagy to promote mitochondrial clearance. Genetic and pharmacological interruption of vIRF-1/NIX-activated mitophagy inhibits HHV-8 productive replication. In short, our findings uncover an essential role of vIRF-1 in mitophagy activation for successful lytic replication of HHV-8.

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Posted December 25, 2018.
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Activation of NIX-mediated mitophagy and replication by an interferon regulatory factor homologue of human herpesvirus
Mai Tram Vo, Barbara J Smith, John Nicholas, Young Bong Choi
bioRxiv 506113; doi: https://doi.org/10.1101/506113
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Activation of NIX-mediated mitophagy and replication by an interferon regulatory factor homologue of human herpesvirus
Mai Tram Vo, Barbara J Smith, John Nicholas, Young Bong Choi
bioRxiv 506113; doi: https://doi.org/10.1101/506113

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