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Cytosine methylation by DNMT2 facilitates stability and survival of HIV-1 RNA in the host cell during infection
Sundarasamy Mahalingam
Published in Portland Press Ltd
2017
PMID: 28476776
Volume: 474
   
Issue: 12
Pages: 2009 - 2026
Abstract
The enigmatic methyltransferase, DNMT2 (DNA methyltransferase 2), structurally resembles a DNA methyltransferase, but has been shown to be a tRNA methyltransferase targeting cytosine within a specific CpG in different tRNA molecules. We had previously shown that, during environmental stress conditions, DNMT2 is re-localized from the nucleus to the cytoplasmic stress granules (SGs) and is associated with RNA-processing proteins. In the present study, we show that DNMT2 binds and methylates various mRNA species in a sequence-independent manner and gets re-localized to SGs in a phosphorylation-dependent manner. Importantly, our results indicate that HIV-1 enhances its survivability in the host cell by utilizing this RNA methylation capability of DNMT2 to increase the stability of its own genome. Upon infection, DNMT2 re-localizes from the nucleus to the SGs and methylates HIV-1 RNA. This DNMT2-dependent methylation provided post-transcriptional stability to the HIV-1 RNA. Furthermore, DNMT2 overexpression increased the HIV-1 viral titre. This would suggest that HIV hijacks the RNAprocessing machinery within the SGs to ensure its own survival in the host cell. Thus, our findings provide for a novel mechanism by which virus tries to modulate the host cell machinery to its own advantage. © 2017 The Author(s).
About the journal
JournalBiochemical Journal
PublisherPortland Press Ltd
ISSN02646021
Open AccessYes
Concepts (62)
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    Cytosine
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    DNA METHYLTRANSFERASE
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    DNA METHYLTRANSFERASE 2
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    Unclassified drug
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    VIRUS RNA
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    DNA (CYTOSINE 5) METHYLTRANSFERASE
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    Hybrid protein
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    Messenger rna
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    TRDMT1 PROTEIN, HUMAN
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    VIRUS RNA
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    Article
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    Controlled study
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    Enzyme binding
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    Enzyme localization
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    HOST CELL
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    Human
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    Human cell
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    Human immunodeficiency virus 1
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    HUMAN IMMUNODEFICIENCY VIRUS INFECTION
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    Methylation
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    Nonhuman
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    Priority journal
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    Protein expression
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    Protein phosphorylation
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    RNA METHYLATION
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    RNA PROCESSING
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    Virus replication
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    VIRUS SURVIVAL
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    VIRUS TITRATION
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    Antagonists and inhibitors
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    CELL GRANULE
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    Chemistry
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    Enzyme specificity
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    Enzymology
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    Genetics
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    Growth, development and aging
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    Hek293 cell line
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    HOST PATHOGEN INTERACTION
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    Metabolism
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    Microbial viability
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    Phosphorylation
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    Physiology
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    Protein processing
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    Protein transport
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    Rna interference
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    RNA PROCESSING
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    Rna stability
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    Upregulation
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    Virology
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    CYTOPLASMIC GRANULES
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    DNA (CYTOSINE-5-)-METHYLTRANSFERASE
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    Hek293 cells
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    HIV-1
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    Host-pathogen interactions
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    Humans
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    Protein processing, post-translational
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    Recombinant fusion proteins
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    RNA PROCESSING, POST-TRANSCRIPTIONAL
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    Rna, messenger
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    RNA, VIRAL
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    Substrate specificity
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    UP-REGULATION