Role of EBNA-3 Family Proteins in EBV Associated B-cell Lymphomagenesis
SHATADRU GHOSH ROY
Frontiers in Microbiology, 2016
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Repression of the Proapoptotic Cellular BIK/NBK Gene by Epstein-Barr Virus Antagonizes Transforming Growth Factor 1-Induced B-Cell Apoptosis
Eva Campion
Journal of Virology, 2014
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Differential Signaling Pathways Are Activated in the Epstein-Barr Virus-Associated Malignancies Nasopharyngeal Carcinoma and Hodgkin Lymphoma
Jennifer Morrison
2004
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Epstein-Barr virus-encoded EBNA1 inhibits the canonical NF-κB pathway in carcinoma cells by inhibiting IKK phosphorylation
sonia maia
Molecular Cancer, 2010
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EBV genes and B cell proliferation
Evelyne Manet
Critical Reviews in Oncology Hematology, 1998
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Pathogenesis and therapeutic implications of EBV-associated epithelial cancers
Celestine Loh
Pathogenesis and therapeutic implications of EBV-associated epithelial cancers, 2023
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Tumor-derived Variants of Epstein-Barr Virus Latent Membrane Protein 1 Induce Sustained Erk Activation and c-Fos
Andrew Snow
Journal of Biological Chemistry, 2008
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Epstein-Barr Virus Promotes Epithelial Cell Growth in the Absence of EBNA2 and LMP1 Expression
Kiwamu Okita
Journal of Virology, 1999
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Contributions of the Epstein-Barr Virus EBNA1 Protein to Gastric Carcinoma
Jaap Middeldorp
Journal of Virology, 2012
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Cellular expression profiles of Epstein-Barr virus-transformed B-lymphoblastoid cell lines
Ratakorn Srisuttee
Biomedical Reports, 2020
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EBNA3B-deficient EBV promotes B cell lymphomagenesis in humanized mice and is found in human tumors
hazem ibrahim, Jaap Middeldorp
Journal of Clinical Investigation, 2012
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Gene array identification of Epstein Barr virus-regulated cellular genes in EBV-converted Burkitt lymphoma cell lines
Martine Raphael
Laboratory Investigation, 2002
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BARR VIRUS ENCODED EBNA1 CONTRIBUTES TO THE GROWTH AND SURVIVAL OF HODGKIN'S LYMPHOMA CELLS Short Title: Downregulation of PTPRK in Hodgkin's lymphoma
Wenbin Wei
2007
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Epstein - Barr Virus Transforming Protein LMP-1 Alters B Cells Gene Expression by Promoting Accumulation of the Oncoprotein ΔNp73α
Evelyne Manet
PLoS Pathogens, 2013
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Identification of MEF2B, EBF1, and IL6R as direct gene targets of EBNA1 critical for EBV-infected B-lymphocyte survival
Alessandra De Leo
Journal of virology, 2015
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The EBNA2-EBF1 complex promotes oncogenic MYC expression levels and metabolic processes required for cell cycle progression of Epstein-Barr virus-infected B cells
Lucas Wange
2021
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Contribution of tumour cell signalling and the microenvironment to the pathogenesis of EBV-associated B cell lymphoma and
Maha Ibrahim
2018
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Epstein–Barr Virus-Associated Malignancies: Roles of Viral Oncoproteins in Carcinogenesis
Ahmed El-Sharkawy
Frontiers in Oncology, 2018
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Epstein–Barr virus nuclear antigen 3C regulated genes in lymphoblastoid cell lines
B. Gewurz
2011
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Accumulation of Cytoplasmic -Catenin and Nuclear Glycogen Synthase Kinase 3 in Epstein-Barr Virus-Infected Cells
Jrs Sevenfoldism
Journal of Virology, 2004
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The EBV-Encoded Oncoprotein, LMP1, Recruits and Transforms Fibroblasts via an ERK-MAPK-Dependent Mechanism
Lawrence Young
Pathogens, 2021
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EBV and NPC carcinogenesis—an alternative viewpoint
Joseph Wee
2021
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Epstein-Barr Virus-Encoded LMP1 Regulates Epithelial Cell Motility and Invasion via the ERK-MAPK Pathway
Lawrence Young
Journal of Virology, 2008
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Simultaneous detection of the two main proliferation driving EBV encoded proteins, EBNA-2 and LMP-1 in single B cells
Abu Rasul, Eva Klein, Hans-erik Claesson
Journal of Immunological Methods, 2012
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The role of EBERs in oncogenesis
Asuka Nanbo
Seminars in Cancer Biology, 2001
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The Role of MAPKs in B Cell Receptor-induced Down-regulation of Egr-1 in Immature B Lymphoma Cells
Lilia Turcios, Jiyuan Ke
Journal of Biological Chemistry, 2006
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Divergent Requirements for the MAPK ERK Signal Transduction Pathway during Initial Virus Infection of Quiescent Primary B Cells and Disruption of Epstein-Barr Virus Latency by Phorbol Esters
Mandy Fenton
Journal of Virology, 1999
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Epstein-Barr virus nuclear protein 2 is a critical determinant for tumor growth in SCID mice and for transformation in vitro
Donald Mosier
Journal of Virology
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