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Dynamics of the human and viral m(6)A RNA methylomes during HIV-1 infection of T cells.
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Method for the Enrichment of N-Methyladenosine-Modified Cellular and HIV-1 RNA.
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Non-POU Domain-Containing Octamer-Binding Protein Negatively Regulates HIV-1 Infection in CD4(+) T Cells.
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Naf1 Regulates HIV-1 Latency by Suppressing Viral Promoter-Driven Gene Expression in Primary CD4+ T Cells.
J Virol. 2016 Dec 16;91(1). doi: 10.1128/JVI.01830-16. Print 2017 Jan 1.
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RNA helicase MOV10 functions as a co-factor of HIV-1 Rev to facilitate Rev/RRE-dependent nuclear export of viral mRNAs.
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HIV reprograms host mAm RNA methylome by viral Vpr protein-mediated degradation of PCIF1.
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promotes malignancy of HBV-related hepatocellular carcinoma by regulating IGF2BP3-mediated nuclear-cytoplasmic shuttling.
Int J Biol Sci. 2025 Jul 28;21(11):4942-4960. doi: 10.7150/ijbs.112133. eCollection 2025.
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RNA mA modification: a key regulator in normal and malignant processes.
Cell Investig. 2025 Jun;1(2). doi: 10.1016/j.clnves.2025.100023. Epub 2025 Jun 6.
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The m6A demethylase FTO regulates TNF-α expression in human macrophages following Toxoplasma gondii infection.
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Resolving sequencing-based HIV-1 epitranscriptomics.
Epigenomics. 2025 Jun;17(8):529-540. doi: 10.1080/17501911.2025.2504333. Epub 2025 May 16.
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Inhibition of ALKBH5 demethylase of mA pathway potentiates HIV-1 reactivation from latency.
Virol J. 2025 Apr 28;22(1):124. doi: 10.1186/s12985-025-02744-4.
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m6A Ribonucleic Acid Methylation in Fibrotic Diseases of Visceral Organs.
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本文引用的文献

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Dynamic m(6)A mRNA methylation directs translational control of heat shock response.
Nature. 2015 Oct 22;526(7574):591-4. doi: 10.1038/nature15377. Epub 2015 Oct 12.
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HNRNPA2B1 Is a Mediator of m(6)A-Dependent Nuclear RNA Processing Events.
Cell. 2015 Sep 10;162(6):1299-308. doi: 10.1016/j.cell.2015.08.011. Epub 2015 Aug 27.
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Structural imprints in vivo decode RNA regulatory mechanisms.
Nature. 2015 Mar 26;519(7544):486-90. doi: 10.1038/nature14263. Epub 2015 Mar 18.
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N(6)-methyladenosine-dependent RNA structural switches regulate RNA-protein interactions.
Nature. 2015 Feb 26;518(7540):560-4. doi: 10.1038/nature14234.
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Structure and thermodynamics of N6-methyladenosine in RNA: a spring-loaded base modification.
J Am Chem Soc. 2015 Feb 11;137(5):2107-15. doi: 10.1021/ja513080v. Epub 2015 Feb 2.
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Stem cells. m6A mRNA methylation facilitates resolution of naïve pluripotency toward differentiation.
Science. 2015 Feb 27;347(6225):1002-6. doi: 10.1126/science.1261417. Epub 2015 Jan 1.
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m(6)A RNA modification controls cell fate transition in mammalian embryonic stem cells.
Cell Stem Cell. 2014 Dec 4;15(6):707-19. doi: 10.1016/j.stem.2014.09.019. Epub 2014 Oct 16.
9
FTO-dependent demethylation of N6-methyladenosine regulates mRNA splicing and is required for adipogenesis.
Cell Res. 2014 Dec;24(12):1403-19. doi: 10.1038/cr.2014.151. Epub 2014 Nov 21.
10
Structural basis for selective binding of m6A RNA by the YTHDC1 YTH domain.
Nat Chem Biol. 2014 Nov;10(11):927-9. doi: 10.1038/nchembio.1654. Epub 2014 Sep 21.

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