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SARS-CoV-2 disrupts host epigenetic regulation via histone mimicry
John Kee
, Samuel Thudium
, David M. Renner
, Karl Glastad
, Katherine Palozola
, Zhen Zhang
, Yize Li
, Yemin Lan
, Joseph Cesare
, Andrey Poleshko
, Anna A. Kiseleva
, Rachel Truitt
, Fabian L. Cardenas-Diaz
, Xianwen Zhang
,
Xuping Xie
, Darrell N. Kotton
, Konstantinos D. Alysandratos
, Johnathan A. Epstein
, Pei Yong Shi
, Wenli Yang
Edward Morrisey, Benjamin A. Garcia, Shelley L. Berger, Susan R. Weiss, Erica Korb
Show 5 others
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Microbiology And Immunology
Biochemistry & Molecular Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
101
Scopus citations
Overview
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Keyphrases
Histone
100%
Epigenetic Regulation
100%
Mimicry
100%
COVID-19
100%
Host Cell
60%
ORF8
60%
Chromatin
20%
Histone Mimics
20%
Viral Proteins
10%
Transcriptional Response
10%
Epigenetics
10%
Response to Infection
10%
Post-translational Modification
10%
Antiviral Response
10%
Histone H3
10%
Chromatin Compaction
10%
Histone Post-translational Modifications
10%
Global Pandemic
10%
Epigenome
10%
Viral Genome Copy number
10%
Biochemistry, Genetics and Molecular Biology
SARS Coronavirus
100%
Epigenetics
100%
Histone
100%
Coronavirinae
25%
Virus Genome
12%
Viral Protein
12%
Posttranslational Modification
12%
Histone H3
12%
Epigenome
12%
Histone Post-Translational Modification
12%
Medicine and Dentistry
Histone
100%
Severe Acute Respiratory Syndrome Coronavirus 2
100%
Host Cell
75%
COVID-19
25%
Post-Translational Modification
25%
Infection
12%
Antivirus Agent
12%
Virus Genome
12%
Viral Protein
12%
Histone H3
12%
Pandemic
12%
Immunology and Microbiology
Severe Acute Respiratory Syndrome Coronavirus 2
100%
Histone
100%
Host Cell
75%
COVID-19
25%
Post-Translational Modification
25%
Viral Protein
12%
Virus Genome
12%
Infection
12%