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Transcriptome data from human nasal epithelial cells infected by H3N2 influenza virus indicate early unbalanced ROS/RNA levels, temporarily increased aerobic fermentation linked to enhanced α-tubulin and rapid energy-dependent IRF9-marked immunization

2021-10-20

Abstract excerpt

<h4>Background</h4> Transcriptome studies of a selected gene set ( ReprogVirus ) had identified unbalanced ROS/RNS levels, which connected to increased aerobic fermentation that linked to alpha-tubulin-based cell restructuration and cell cycle control, as a ma jor c omplex t rait for e arly d e novo programming ( CoV-MAC-TED ) upon SARS-CoV-2 infection. Recently, CoV-MAC-TED was confirmed as promising mark...

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Literature Corpus work
2aea47f0-0455-5766-be6f-0b72fca100e0
DOI
10.1101/2021.10.18.464828
Open publication

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Transcriptome data from human nasal epithelial cells infected by H3N2 influenza virus indicate early unbalanced ROS/RNA levels, temporarily increased aerobic fermentation linked to enhanced α-tubulin and rapid energy-dependent IRF9-marked immunizationDOI 10.1101/2021.10.18.464828
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