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1.
STAR Protoc ; 3(2): 101297, 2022 06 17.
Article in English | MEDLINE | ID: mdl-35463466

ABSTRACT

Aberrant cellular bioenergetics has detrimental consequences in host cells. For instance, pathogenic Zika virus strains can suppress mitochondria respiration and glycolytic functions, disrupting cellular bioenergetics that leads to apoptosis. Herein, we describe methods for flavivirus propagation, titering and infection, cell preparation, and procedures for mitochondrial and glycolytic stress tests. The protocol enables assessment of cellular respiration and glycolytic flux in flavivirus-infected cells. For complete details on the use and execution of this protocol, please refer to Yau et al. (2021).


Subject(s)
Flavivirus , Zika Virus Infection , Zika Virus , Energy Metabolism , Glycolysis , Humans , Mitochondria/metabolism , Zika Virus Infection/metabolism
2.
Cell Rep ; 37(11): 110118, 2021 12 14.
Article in English | MEDLINE | ID: mdl-34910902

ABSTRACT

Zika virus (ZIKV) is an Aedes-mosquito-borne flavivirus that causes debilitating congenital and developmental disorders. Improved understanding of ZIKV pathogenesis could assist efforts to fill the therapeutic and vaccine gap. We use several ZIKV strains, including a pair differing by a single phenylalanine-to-leucine substitution (M-F37L) in the membrane (M) protein, coupled with unbiased genomics to demarcate the border between attenuated and pathogenic infection. We identify infection-induced metabolic dysregulation as a minimal set of host alterations that differentiates attenuated from pathogenic ZIKV strains. Glycolytic rewiring results in impaired oxidative phosphorylation and mitochondrial dysfunction that trigger inflammation and apoptosis in pathogenic but not attenuated ZIKV strains. Critically, pyruvate supplementation prevents cell death, in vitro, and rescues fetal development in ZIKV-infected dams. Our findings thus demonstrate dysregulated metabolism as an underpinning of ZIKV pathogenicity and raise the potential of pyruvate supplementation in expectant women as a prophylaxis against congenital Zika syndrome.


Subject(s)
Fetal Development , Glycolysis , Mitochondria/pathology , Virus Replication , Zika Virus Infection/complications , Zika Virus/physiology , Animals , Chlorocebus aethiops , Dietary Supplements , Female , Humans , Male , Mitochondria/drug effects , Mitochondria/metabolism , Oxidative Phosphorylation , Pentose Phosphate Pathway , Pyruvic Acid/administration & dosage , Vero Cells , Zika Virus Infection/pathology , Zika Virus Infection/virology
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