Disease Activity-Associated Alteration of mRNA m5 C Methylation in CD4+ T Cells of Systemic Lupus Erythematosus
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Xiangyang Xue | Zibing Jin | Huijing Wang | X. Xue | Gangqiang Guo | Xinyu Shi | Lele Ye | Kejing Yan | Zhiyuan Chen | Huidi Zhang | Gangqiang Guo | Lele Ye | Huijing Wang | Zhiyuan Chen | Kejing Yan | Xinyu Shi | Huidi Zhang | Zi‐Bing Jin
[1] S. Dietmann,et al. Cytosine-5 RNA Methylation Regulates Neural Stem Cell Differentiation and Motility , 2016, Stem cell reports.
[2] B. Croker,et al. Normalization of CD4+ T cell metabolism reverses lupus , 2015, Science Translational Medicine.
[3] M. Gorospe,et al. NSUN 2-mediated m 5 C methylation and METTL 3 / METTL 14-mediated m 6 A methylation cooperatively enhance p 21 translation † Running Title : NSUN 2 and METTL 3 / METTL 14 regulate p 21 translation , 2017 .
[4] J. Wren,et al. Epigenome profiling reveals significant DNA demethylation of interferon signature genes in lupus neutrophils. , 2015, Journal of autoimmunity.
[5] R. Weksberg,et al. Cell lineage-specific genome-wide DNA methylation analysis of patients with paediatric-onset systemic lupus erythematosus , 2019, Epigenetics.
[6] K. Wu,et al. NovelmiRNA-25 inhibits AMPD2 in peripheral blood mononuclear cells of patients with systemic lupus erythematosus and represents a promising novel biomarker , 2018, Journal of Translational Medicine.
[7] P. Zhou,et al. Interferon-α exacerbates neuropsychiatric phenotypes in lupus-prone mice , 2019, Arthritis Research & Therapy.
[8] T. Forsthuber,et al. T cell subsets and their signature cytokines in autoimmune and inflammatory diseases. , 2015, Cytokine.
[9] Dan Xie,et al. 5-methylcytosine promotes pathogenesis of bladder cancer through stabilizing mRNAs , 2019, Nature Cell Biology.
[10] S. Blüml,et al. Innate immunity as the trigger of systemic autoimmune diseases. , 2019, Journal of autoimmunity.
[11] B. Golinelli‐Pimpaneau,et al. The human tRNA m5C methyltransferase Misu is multisite-specific , 2012, RNA biology.
[12] D. Ye,et al. Potential link between m6A modification and systemic lupus erythematosus , 2018, Molecular immunology.
[13] P. Meroni,et al. Epigenetics and Systemic Lupus Erythematosus: Unmet Needs , 2016, Clinical Reviews in Allergy & Immunology.
[14] Honglong Wu,et al. DNA methylation and mRNA and microRNA expression of SLE CD4+ T cells correlate with disease phenotype. , 2014, Journal of autoimmunity.
[15] R. Micura,et al. Distinct 5-methylcytosine profiles in poly(A) RNA from mouse embryonic stem cells and brain , 2017, Genome Biology.
[16] I. Mohr,et al. Repression of eEF2K transcription by NF-κB tunes translation elongation to inflammation and dsDNA-sensing , 2019, Proceedings of the National Academy of Sciences.
[17] Dvir Aran,et al. Genome-wide survey reveals predisposing diabetes type 2-related DNA methylation variations in human peripheral blood. , 2012, Human molecular genetics.
[18] Q. Lu,et al. Epigenetics and SLE: RFX1 downregulation causes CD11a and CD70 overexpression by altering epigenetic modifications in lupus CD4+ T cells. , 2010, Journal of autoimmunity.
[19] H. Cui,et al. Effects of NSUN2 deficiency on the mRNA 5-methylcytosine modification and gene expression profile in HEK293 cells. , 2019, Epigenomics.
[20] Hanchen Liu,et al. Epitranscriptomic 5-Methylcytosine Profile in PM2.5-induced Mouse Pulmonary Fibrosis , 2020, Genom. Proteom. Bioinform..
[21] Jun Xia,et al. RNA 5-Methylcytosine Facilitates the Maternal-to-Zygotic Transition by Preventing Maternal mRNA Decay. , 2019, Molecular cell.
[22] J. Reveille,et al. The Systemic Lupus Activity Measure-revised, the Mexican Systemic Lupus Erythematosus Disease Activity Index (SLEDAI), and a modified SLEDAI-2K are adequate instruments to measure disease activity in systemic lupus erythematosus. , 2004, The Journal of rheumatology.
[23] X. Xue,et al. Hsa_circ_0000479 as a Novel Diagnostic Biomarker of Systemic Lupus Erythematosus , 2019, Front. Immunol..
[24] E. Levanon,et al. Increased RNA Editing May Provide a Source for Autoantigens in Systemic Lupus Erythematosus , 2018, Cell reports.
[25] Edward M Kennedy,et al. Epitranscriptomic Addition of m5C to HIV-1 Transcripts Regulates Viral Gene Expression. , 2019, Cell host & microbe.
[26] Tao Pan,et al. Dynamic RNA Modifications in Gene Expression Regulation , 2017, Cell.
[27] Olga Tanaseichuk,et al. Metascape provides a biologist-oriented resource for the analysis of systems-level datasets , 2019, Nature Communications.
[28] Zhe Zhang,et al. Overall Downregulation of mRNAs and Enrichment of H3K4me3 Change Near Genome-Wide Association Study Signals in Systemic Lupus Erythematosus: Cell-Specific Effects , 2018, Front. Immunol..
[29] N. Tamura,et al. JAK inhibitor has the amelioration effect in lupus-prone mice: the involvement of IFN signature gene downregulation , 2017, BMC Immunology.
[30] R. Plomin,et al. Bisulfite-based epityping on pooled genomic DNA provides an accurate estimate of average group DNA methylation , 2009, Epigenetics & Chromatin.
[31] M. Bohnsack,et al. Eukaryotic 5-methylcytosine (m5C) RNA Methyltransferases: Mechanisms, Cellular Functions, and Links to Disease , 2019, Genes.
[32] Shufeng Zhou,et al. Characterization of human cytomegalovirus UL145 and UL136 genes in low-passage clinical isolates from infected Chinese infants , 2011, Medical science monitor : international medical journal of experimental and clinical research.
[33] Annalisa Schaub,et al. Splicing in immune cells—mechanistic insights and emerging topics , 2017, International immunology.
[34] Xiaoyu Chen,et al. The role of m6A RNA methylation in human cancer , 2019, Molecular Cancer.
[35] Shikui Tu,et al. Integrated analysis of transcriptome-wide m6A methylome of osteosarcoma stem cells enriched by chemotherapy. , 2019, Epigenomics.
[36] R. Schneider,et al. Lateral Thinking: How Histone Modifications Regulate Gene Expression. , 2016, Trends in genetics : TIG.
[37] Aaron R. Quinlan,et al. Bioinformatics Applications Note Genome Analysis Bedtools: a Flexible Suite of Utilities for Comparing Genomic Features , 2022 .
[38] L. Rönnblom,et al. Cytokines as therapeutic targets in SLE , 2010, Nature Reviews Rheumatology.
[39] M. Gorospe,et al. NSUN2‐Mediated m5C Methylation and METTL3/METTL14‐Mediated m6A Methylation Cooperatively Enhance p21 Translation , 2017, Journal of cellular biochemistry.
[40] Kathleen E. Sullivan,et al. New insights into the immunopathogenesis of systemic lupus erythematosus , 2016, Nature Reviews Rheumatology.
[41] Zlatko Trajanoski,et al. meRanTK: methylated RNA analysis ToolKit , 2016, Bioinform..
[42] Gerald McGwin,et al. Derivation and validation of the Systemic Lupus International Collaborating Clinics classification criteria for systemic lupus erythematosus. , 2012, Arthritis and rheumatism.
[43] L. Vardy,et al. 5-Methylcytosine RNA Methylation in Arabidopsis Thaliana. , 2017, Molecular plant.
[44] Samir Adhikari,et al. 5-methylcytosine promotes mRNA export — NSUN2 as the methyltransferase and ALYREF as an m5C reader , 2017, Cell Research.
[45] T. Preiss,et al. Widespread occurrence of 5-methylcytosine in human coding and non-coding RNA , 2012, Nucleic acids research.
[46] Anthony O. Olarerin-George,et al. MetaPlotR: a Perl/R pipeline for plotting metagenes of nucleotide modifications and other transcriptomic sites , 2017, Bioinform..
[47] Damian Szklarczyk,et al. The STRING database in 2017: quality-controlled protein–protein association networks, made broadly accessible , 2016, Nucleic Acids Res..
[48] Q. Lu,et al. Abnormal DNA methylation in CD4+ T cells from patients with systemic lupus erythematosus, systemic sclerosis, and dermatomyositis , 2009, Scandinavian journal of rheumatology.
[49] Q. Lu,et al. Impaired DNA methylation and its mechanisms in CD4(+)T cells of systemic lupus erythematosus. , 2013, Journal of autoimmunity.
[50] L. Morel. Immunometabolism in systemic lupus erythematosus , 2017, Nature Reviews Rheumatology.
[51] Dagmar Wieczorek,et al. Mutations in NSUN2 cause autosomal-recessive intellectual disability. , 2012, American journal of human genetics.
[52] Q. Lu,et al. Increased 5-hydroxymethylcytosine in CD4(+) T cells in systemic lupus erythematosus. , 2016, Journal of autoimmunity.
[53] A. Lusser,et al. The dynamic RNA modification 5‐methylcytosine and its emerging role as an epitranscriptomic mark , 2018, Wiley interdisciplinary reviews. RNA.
[54] Xinyu Yang,et al. Full high-throughput sequencing analysis of differences in expression profiles of long noncoding RNAs and their mechanisms of action in systemic lupus erythematosus , 2019, Arthritis Research & Therapy.
[55] Ewelina M. Sokolowska,et al. m5C Methylation Guides Systemic Transport of Messenger RNA over Graft Junctions in Plants , 2019, Current Biology.
[56] G. Rechavi,et al. 5-methylcytosine mediates nuclear export of mRNA , 2017, Cell Research.