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Publication : Dengue Virus Impairs Mitochondrial Fusion by Cleaving Mitofusins.

First Author  Yu CY Year  2015
Journal  PLoS Pathog Volume  11
Issue  12 Pages  e1005350
PubMed ID  26717518 Mgi Jnum  J:245987
Mgi Id  MGI:5914524 Doi  10.1371/journal.ppat.1005350
Citation  Yu CY, et al. (2015) Dengue Virus Impairs Mitochondrial Fusion by Cleaving Mitofusins. PLoS Pathog 11(12):e1005350
abstractText  Mitochondria are highly dynamic subcellular organelles participating in many signaling pathways such as antiviral innate immunity and cell death cascades. Here we found that mitochondrial fusion was impaired in dengue virus (DENV) infected cells. Two mitofusins (MFN1 and MFN2), which mediate mitochondrial fusion and participate in the proper function of mitochondria, were cleaved by DENV protease NS2B3. By knockdown and overexpression approaches, these two MFNs showed diverse functions in DENV infection. MFN1 was required for efficient antiviral retinoic acid-inducible gene I-like receptor signaling to suppress DENV replication, while MFN2 participated in maintaining mitochondrial membrane potential (MMP) to attenuate DENV-induced cell death. Cleaving MFN1 and MFN2 by DENV protease suppressed mitochondrial fusion and deteriorated DENV-induced cytopathic effects through subverting interferon production and facilitating MMP disruption. Thus, MFNs participate in host defense against DENV infection by promoting the antiviral response and cell survival, and DENV regulates mitochondrial morphology by cleaving MFNs to manipulate the outcome of infection.
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