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Updated: Aug 8, 2026

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Human cytomegalovirus immediate-early gene 2 protein interacts with itself and with several novel cellular proteins
B A Furnari1, E Poma, T F Kowalik
1Department of Microbiology and Immunology, University of North Carolina, Chapel Hill 27599.
Insights
Human cytomegalovirus immediate-early gene product 2 (IE2) interacts with cellular proteins to indirectly activate gene transcription. IE2 also self-interacts via a helix-turn-helix motif, influencing its regulatory functions.
Area of Science:
- Molecular Biology
- Virology
- Gene Regulation
Background:
- Human cytomegalovirus immediate-early gene product 2 (IE2) transactivates promoters and autoregulates its own promoter.
- IE2's direct DNA sequence-specific transactivation role was unclear, prompting investigation into protein interactions.
Purpose of the Study:
- To investigate whether IE2 indirectly mediates DNA sequence-specific transactivation through interactions with cellular proteins.
- To map the domains within IE2 responsible for these interactions and to study IE2 self-interaction.
Main Methods:
- Polymerase chain reaction amplification and subcloning of IE cDNAs into a bacterial expression vector.
- Glutathione S-transferase-fusion protein precipitation and far-Western analysis to detect protein interactions.
- Binding assays and far-Western analysis to study IE2-IE2 interactions.
Main Results:
- IE2 interacts directly or indirectly with multiple nuclear proteins (14-200 kDa), some of which are phosphorylated.
- Interaction domains within IE2 correlate with transactivation and autoregulation functions.
- IE2 self-interaction occurs within a domain (aa 456-539) containing a putative helix-turn-helix motif.
Conclusions:
- IE2's transactivation function may be mediated through interactions with cellular partners.
- IE2 self-interaction is crucial and localized to a specific C-terminal domain.
- IE2 does not directly interact with IE1 or certain IE2 deletion mutants lacking the multimerization domain.
Abstract:
The human cytomegalovirus immediate-early gene product 2 (IE2) is able to transactivate homologous and heterologous promoters alone or augmented by immediate-early gene product 1 (IE1). IE2 has also been shown to autoregulate the major immediate-early promoter by directly binding to a cis repression signal located between the TATA box and the cap site. However, IE2 has not been shown to act directly through a specific DNA sequence in transactivating various promoters. To understand whether IE2 can be indirectly involved in DNA sequence-specific transactivation through interactions with other transcriptional factors, we performed a study of the interactions of IE2 with cellular proteins. In order to study these interactions, IE cDNAs were subcloned into a bacterial expression vector, pGEX2T, by polymerase chain reaction amplification to produce fusion proteins which were full-length as well as proteins which contained various functional domains. We were able to demonstrate IE2's ability to interact directly or indirectly with several cellular proteins ranging from > 200 to 14 kDa through glutathione S-transferase-fusion protein precipitation and far-Western analysis. These interactions have been mapped to domains within IE2 which are known to be necessary for either transactivation or both transactivation and autoregulation. All of the IE2-associated proteins are nuclear proteins, and a subset are phosphorylated. In vitro-synthesized 35S-IE2 protein and bacterially expressed IE2 fusion proteins were used to study IE2-IE2 interaction by binding assay and far-Western analysis. IE2-IE2 interactions were mapped to a domain containing a putative helix-turn-helix motif located near the C terminus of IE2, between amino acids 456 and 539. However, IE2 was unable to directly interact with either IE1, an alternatively spliced variant of IE2 (55 kDa), or IE2 deletion mutants that did not contain the multimerization domain.
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