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Unraveling the layers of epigenetic control in respiratory antiviral defense. [PDF]
McFadden MI, Simo B, Forero A.
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The activation of the metabolic oxaloacetate-pyruvate axis restores influenza A virus replication during impaired glycolysis. [PDF]
Bojarzyn CR +5 more
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Mitochondrial OXPHOS restricts SARS-CoV-2 replication. [PDF]
Soto Albrecht YE +21 more
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USP17L13 Enhances Influenza a Virus Replication by Mediating the Degradation of RIG-I and MDA5. [PDF]
Zhang Y +8 more
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Epitranscriptomic regulation of viral replication
RNA plays central roles in biology and novel functions and regulation mechanisms are constantly emerging. To accomplish some of their functions within the cell, RNA molecules undergo hundreds of chemical modifications from which N6-methyladenosine (m6A), inosine (I), pseudouridine (ψ) and 5-methylcytosine (5mC) have been described in eukaryotic mRNA ...
Fernando Valiente-Echeverría +1 more
exaly +4 more sources
HSV-1 DNA Replication—Coordinated Regulation by Viral and Cellular Factors [PDF]
DNA replication is an integral step in the herpes simplex virus type 1 (HSV-1) life cycle that is coordinated with the cellular DNA damage response, repair and recombination of the viral genome, and viral gene transcription. HSV-1 encodes its own DNA replication machinery, including an origin binding protein (UL9), single-stranded DNA binding protein ...
Jill Dembowski
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MicroRNA regulation of viral replication in teleost fish: a review
Reviews in Aquaculture, 2021AbstractMicroRNAs (miRNAs) are single‐stranded non‐coding RNA molecules. In addition to participating in various biological processes of eukaryotes, such as cell proliferation, development, differentiation, metabolism, tumorigenesis, and apoptosis, miRNAs also play an important role in the regulation of virus replication.
Jiagang Tu, Yong-An Zhang
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Molecular mechanisms of
AbstractLipid phosphoinositides are master signaling molecules in eukaryotic cells and key markers of organelle identity. Because of these important roles, the kinases and phosphatases that generate phosphoinositides must be tightly regulated. Viruses can manipulate this regulation, with the Type III phosphatidylinositol 4‐kinases (PI4KA and PI4KB ...
Jacob A. McPhail, John E. Burke
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