N(6)-methyladenosine-binding protein YTHDF1 suppresses EBV replication and promotes EBV RNA decay is a research paper published in EMBO Reports (2021). On theSindex it has a DataRank of 0. It has been cited 107 times.
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Guangzhou Science Technology and Innovation Commission
Grant: 201607020038
National Institutes of Health R01 Grants
Grant: CA214965
National Institutes of Health R01 Grants
Grant: CA236399
National Natural Science Foundation of China
Grant: 81802775
National Natural Science Foundation of China
Grant: 81672703
National Natural Science Foundation of China
Grant: 81702719
National Natural Science Foundation of China
Grant: 81830090
National Natural Science Foundation of China
Grant: 81520108022
Natural Science Foundation of Guang Dong Province
Grant: 2017A030312003
Guangdong Province key research and development program
Grant: 2019B020226002
National Key R&D Program
Grant: 2017YFA0505600
National Key R&D Program
Grant: 2017YFC0908503
National Key R&D Program
Grant: 2016YFA0502100
FWCI
7.40
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Attenuation of IFN signaling due to m6A modification of the host epitranscriptome promotes EBV lytic reactivation
Additional file 1 of Attenuation of IFN signaling due to m6A modification of the host epitranscriptome promotes EBV lytic reactivation
Additional file 2 of Attenuation of IFN signaling due to m6A modification of the host epitranscriptome promotes EBV lytic reactivation
Additional file 2 of Attenuation of IFN signaling due to m6A modification of the host epitranscriptome promotes EBV lytic reactivation
Additional file 2 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 2 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 6 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 8 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 9 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 9 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 7 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 8 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 4 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 7 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 4 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 5 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 5 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 6 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 3 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication
Additional file 1 of N6-methyladenosine modification positively regulate Japanese encephalitis virus replication