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An Epstein-Barr Virus-Encoded Protein Complex Requires an Origin of Lytic Replication In Cis to Mediate Late Gene Transcription | PLOS Pathogens
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CAGE-seq analysis of Epstein-Barr virus lytic gene transcription: 3 kinetic classes from 2 mechanisms | PLOS Pathogens
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Sumoylation of the Epstein-Barr Virus BZLF1 Protein Inhibits Its Transcriptional Activity and Is Regulated by the Virus-Encoded Protein Kinase | Journal of Virology
An Epstein-Barr Virus-Encoded Protein Complex Requires an Origin of Lytic Replication In Cis to Mediate Late Gene Transcription | PLOS Pathogens
PETER HOLTHAUSEN - KAMINBAU
The B-Cell-Specific Transcription Factor and Master Regulator Pax5 Promotes Epstein-Barr Virus Latency by Negatively Regulating the Viral Immediate Early Protein BZLF1 | Journal of Virology
PETER HOLTHAUSEN - KAMINBAU
Electronic Communication and Negative Binding Cooperativity in Diborylated Bithiophenes | Journal of the American Chemical Society
The B-Cell-Specific Transcription Factor and Master Regulator Pax5 Promotes Epstein-Barr Virus Latency by Negatively Regulating the Viral Immediate Early Protein BZLF1 | Journal of Virology
The B-Cell-Specific Transcription Factor and Master Regulator Pax5 Promotes Epstein-Barr Virus Latency by Negatively Regulating the Viral Immediate Early Protein BZLF1 | Journal of Virology
The Epstein-Barr Virus BZLF1 Protein Inhibits Tumor Necrosis Factor Receptor 1 Expression through Effects on Cellular C/EBP Prot
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Electronic Communication and Negative Binding Cooperativity in Diborylated Bithiophenes | Journal of the American Chemical Society
Viral Genome Methylation Differentially Affects the Ability of BZLF1 versus BRLF1 To Activate Epstein-Barr Virus Lytic Gene Expression and Viral Replication | Journal of Virology
BZLF1 Activation of the Methylated Form of the BRLF1 Immediate-Early Promoter Is Regulated by BZLF1 Residue 186 | Journal of Virology
PETER HOLTHAUSEN - KAMINBAU
Human Monoclonal Antibodies Produced by Epstein-Barr Virus Immortalized Cell Lines: Technical and Theoretical Principles | SpringerLink
Activation of the Epstein-Barr Virus Replicative Cycle by Human Herpesvirus 6
CAGE-seq analysis of Epstein-Barr virus lytic gene transcription: 3 kinetic classes from 2 mechanisms | PLOS Pathogens