Transcriptional interference between the EBV transcription factors EB1 and R: both DNA-binding and activation domains of EB1 are required
Open Access
- 1 January 1991
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 19 (6) , 1251-1258
- https://doi.org/10.1093/nar/19.6.1251
Abstract
The switch from latency to a productive infection in EBV-infected B cells is linked to the expression of two viral sequence-specific DNA-binding transcription factors called EB1 and A. EB1 shares sequence homologles with the bZIP family of proteins In the basic region required for specific DNA Interaction. Here, we provide evidence that EB1 and R can synergistically activate specific transcription, and that overexpressed, unbound EB1, represses the R-lnduced transcription (‘squelching’). In order to identify the EB1 domains Involved in transcriptional activation, transcriptional synergy and transcriptional repression, we performed extensive mutagenesis of the EB1 protein. Results show that five segments (region 1 to region 5), localized at the N-terminus of EB1 exhibit characteristics of activating domains, since they are required for full transcriptional activity, without obvious role in DNA- binding, or the nuclear localization. Two domains rich in basic amino-acids are required for the nuclear localization of EB1. One domain is within the basic region B, also necessary for specific and stable interaction between EB1 and its cognate DNA sequences. It is also shown that the ‘activation’ domain, and more surprisingly the DNA-binding domain of EB1, may interact with a factor(s), essential for R-induced activation, and probably required for synergy between EB1 and R.Keywords
This publication has 28 references indexed in Scilit:
- Evidence for interaction of different eukaryotic transcriptional activators with distinct cellular targetsNature, 1990
- A novel mediator between activator proteins and the RNA polymerase II transcription apparatusCell, 1990
- Mechanism of transcriptional activation by Sp1: Evidence for coactivatorsCell, 1990
- Secondary structure of a leucine zipper determined by nuclear magnetic resonance spectroscopyBiochemistry, 1990
- Biochemical analysis of transcriptional activation by Jun: Differential activity of c- and v-JunCell, 1989
- Identification and characterization of oriLyt, a lytic origin of DNA replication of Epstein-Barr virusCell, 1988
- Negative effect of the transcriptional activator GAL4Nature, 1988
- Structural and functional characterization of the short acidic transcriptional activation region of yeast GCN4 proteinNature, 1988
- Biochemical transfer of single-copy eucaryotic genes using total cellular DNA as donorCell, 1978
- Persisting oncogenic herpesvirus induced by the tumour promoter TPANature, 1978