RNA-seq and microRNA association analysis to explore the pathogenic mechanism of DHAV-1 infection with DEHs
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Jiaguo Liu | Hong Dong | Weiran Wang | Kun Li | Zhang Tao
[1] Chaofeng Sun,et al. Integrated analysis of miRNA-mRNA regulatory network and functional verification of miR-338-3p in coronary heart disease , 2022, Functional & Integrative Genomics.
[2] Boyin Jia,et al. The combination of SMRT sequencing and Illumina sequencing highlights organ-specific and age-specific expression patterns of miRNAs in Sika Deer , 2022, Frontiers in Veterinary Science.
[3] Jinli Wang,et al. Treatment effects of phosphorylated Chrysanthemum indicum polysaccharides on duck viral hepatitis by protecting mitochondrial function from oxidative damage. , 2022, Veterinary microbiology.
[4] J. Zhang,et al. Downregulation of miR-122 by porcine reproductive and respiratory syndrome virus promotes viral replication by targeting SOCS3. , 2022, Veterinary microbiology.
[5] R. Jia,et al. The DHAV-1 protein VP1 interacts with PI3KC3 to induce autophagy through the PI3KC3 complex , 2022, Veterinary Research.
[6] K. Misawa,et al. Pathogenic variants detected by RNA sequencing in Cornelia de Lange syndrome. , 2022, Genomics.
[7] Zhang Chengcheng,et al. Mitophagy Induced by Classical swine fever Virus Nonstructural Protein 5A Promotes viral replication. , 2022, Virus research.
[8] A. Waage,et al. Paired miRNA- and messenger RNA-sequencing identifies novel miRNA-mRNA interactions in multiple myeloma , 2022, Scientific Reports.
[9] J. Bailey,et al. mirTarRnaSeq: An R/Bioconductor Statistical Package for miRNA-mRNA Target Identification and Interaction Analysis , 2022, BMC Genomics.
[10] J. Bailey,et al. mirTarRnaSeq: An R/Bioconductor Statistical Package for miRNA-mRNA Target Identification and Interaction Analysis , 2022, BMC Genomics.
[11] R. Jia,et al. Attenuated Duck Hepatitis A Virus Infection Is Associated With High mRNA Maintenance in Duckling Liver via m6A Modification , 2022, Frontiers in Immunology.
[12] Rui-hua Zhang,et al. Long Noncoding RNA Expression Rofiles Elucidate the Potential Roles of lncRNA- XR_003496198 in Duck Hepatitis A Virus Type 1 Infection , 2022, Frontiers in Cellular and Infection Microbiology.
[13] S. Bhattacharyya,et al. Target-Dependent Coordinated Biogenesis of Secondary MicroRNAs by miR-146a Balances Macrophage Activation Processes , 2022, Molecular and cellular biology.
[14] J. Oliveros,et al. Contribution of Host miRNA-223-3p to SARS-CoV-Induced Lung Inflammatory Pathology , 2022, mBio.
[15] D. Bartel,et al. MicroRNA 3′-compensatory pairing occurs through two binding modes, with affinity shaped by nucleotide identity and position , 2022, eLife.
[16] S. Zelenay,et al. RNA sensing via the RIG‐I‐like receptor LGP2 is essential for the induction of a type I IFN response in ADAR1 deficiency , 2022, The EMBO journal.
[17] Jin-ding Chen,et al. The Role of Mitophagy in Viral Infection , 2022, Cells.
[18] S. Odend'hal. duck hepatitis A virus , 2022, CABI Compendium.
[19] Jie Wang,et al. Chicken miR-126-5p negatively regulates antiviral innate immunity by targeting TRAF3 , 2021, Veterinary Research.
[20] Rui-hua Zhang,et al. Integrated miRNA and mRNA Expression Profiles Reveal Differentially Expressed miR-222a as an Antiviral Factor Against Duck Hepatitis A Virus Type 1 Infection , 2022, Frontiers in Cellular and Infection Microbiology.
[21] Hongbin He,et al. SARS-CoV-2 ORF10 suppresses the antiviral innate immune response by degrading MAVS through mitophagy , 2021, Cellular & Molecular Immunology.
[22] Liang-Guo Xu,et al. N4BP3 Regulates RIG-I-Like Receptor Antiviral Signaling Positively by Targeting Mitochondrial Antiviral Signaling Protein , 2021, Frontiers in Microbiology.
[23] Zixiang Zhu,et al. The Insufficient Activation of RIG-I–Like Signaling Pathway Contributes to Highly Efficient Replication of Porcine Picornaviruses in IBRS-2 Cells , 2021, Molecular & cellular proteomics : MCP.
[24] Hongna Wang,et al. Mitophagy in Antiviral Immunity , 2021, Frontiers in Cell and Developmental Biology.
[25] Kawkab A. Ahmed,et al. Insights into the Genetic Evolution of Duck Hepatitis A Virus in Egypt , 2021, Animals : an open access journal from MDPI.
[26] Borbála Nagy,et al. Genomic Epidemiology and Evolution of Duck Hepatitis A Virus , 2021, Viruses.
[27] W. Heo,et al. Mitofusin-2 boosts innate immunity through the maintenance of aerobic glycolysis and activation of xenophagy in mice , 2021, Communications biology.
[28] J. Nickels,et al. Lipotoxicity reduces DDX58/Rig-1 expression and activity leading to impaired autophagy and cell death , 2021, Autophagy.
[29] R. Jia,et al. Duck Hepatitis A Virus Type 1 Induces eIF2α Phosphorylation-Dependent Cellular Translation Shutoff via PERK/GCN2 , 2021, Frontiers in Microbiology.
[30] Wei Jiang,et al. E3 ligase Nedd4l promotes antiviral innate immunity by catalyzing K29-linked cysteine ubiquitination of TRAF3 , 2021, Nature Communications.
[31] S. Diao,et al. The role and mechanism of mitochondrial functions and energy metabolism in the function regulation of the mesenchymal stem cells , 2021, Stem cell research & therapy.
[32] Lili Cao,et al. The mitochondrial protein ERAL1 suppresses RNA virus infection by facilitating RIG-I-like receptor signaling. , 2021, Cell reports.
[33] Hualan Chen,et al. TRIM35 mediates protection against influenza infection by activating TRAF3 and degrading viral PB2 , 2020, Protein & Cell.
[34] Shaoli Lin,et al. A Novel Peptide Isolated from a Phage Display Peptide Library Modeling Antigenic Epitope of DHAV-1 and DHAV-3 , 2020, Vaccines.
[35] Huanchun Chen,et al. Influenza A virus protein PB1-F2 impairs innate immunity by inducing mitophagy , 2020, Autophagy.
[36] Shaoli Lin,et al. Quantitative Proteomic Analysis Uncovers the Mediation of Endoplasmic Reticulum Stress-Induced Autophagy in DHAV-1-Infected DEF Cells , 2019, International journal of molecular sciences.
[37] R. Jia,et al. DHAV-1 Inhibits Type I Interferon Signaling to Assist Viral Adaption by Increasing the Expression of SOCS3 , 2019, Front. Immunol..
[38] John Karijolich,et al. RIG-I like receptor sensing of host RNAs facilitates the cell-intrinsic immune response to KSHV infection , 2018, Nature Communications.
[39] R. Jia,et al. Transcriptomic Characterization of a Chicken Embryo Model Infected With Duck Hepatitis A Virus Type 1 , 2018, Front. Immunol..
[40] Adam Grundhoff,et al. Identification of virus-encoded microRNAs in divergent Papillomaviruses , 2018, PLoS pathogens.
[41] D. Beezhold,et al. Upregulation of miRNA-4776 in Influenza Virus Infected Bronchial Epithelial Cells Is Associated with Downregulation of NFKBIB and Increased Viral Survival , 2017, Viruses.
[42] Baohong Zhang,et al. Global microRNA modification in cotton (Gossypium hirsutum L.). , 2015, Plant biotechnology journal.
[43] M. Gale,et al. RIG-I in RNA virus recognition , 2015, Virology.
[44] A-IDENTIFICATION OF THE VIRUS , 2015 .