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Published on: January 24, 2016
Actin-dependent activation of serum response factor in T cells by the viral oncoprotein tip
Kristin Katsch1, Sarah Jill de Jong, Jens-Christian Albrecht
1Institut für Klinische und Molekulare Virologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany. Brigitte.Biesinger@viro.med.uni-erlangen.de.
Abstract:
Serum response factor (SRF) acts as a multifunctional transcription factor regulated by mutually exclusive interactions with ternary complex factors (TCFs) or myocardin-related transcription factors (MRTFs). Binding of Rho- and actin-regulated MRTF:SRF complexes to target gene promoters requires an SRF-binding site only, whereas MAPK-regulated TCF:SRF complexes in addition rely on flanking sequences present in the serum response element (SRE). Here, we report on the activation of an SRE luciferase reporter by Tip, the viral oncoprotein essentially contributing to human T-cell transformation by Herpesvirus saimiri. SRE activation in Tip-expressing Jurkat T cells could not be attributed to triggering of the MAPK pathway. Therefore, we further analyzed the contribution of MRTF complexes. Indeed, Tip also activated a reporter construct responsive to MRTF:SRF. Activation of this reporter was abrogated by overexpression of a dominant negative mutant of the MRTF-family member MAL. Moreover, enrichment of monomeric actin suppressed the Tip-induced reporter activity. Further upstream, the Rho-family GTPase Rac, was found to be required for MRTF:SRF reporter activation by Tip. Initiation of this pathway was strictly dependent on Tip's ability to interact with Lck and on the activity of this Src-family kinase. Independent of Tip, T-cell stimulation orchestrates Src-family kinase, MAPK and actin pathways to induce SRF. These findings establish actin-regulated transcription in human T cells and suggest its role in viral oncogenesis.
Insights
Viral oncoprotein Tip activates serum response factor (SRF) transcription in T cells via the actin pathway, not MAPK. This sheds light on SRF
Area of Science:
- Molecular Biology
- Virology
- Immunology
Background:
- Serum response factor (SRF) is a transcription factor regulated by TCFs or MRTFs.
- SRF:TCF complexes require SRE sequences, while SRF:MRTF complexes need only an SRF-binding site.
- Viral oncoproteins can manipulate host cell transcription.
Purpose of the Study:
- To investigate the mechanism by which the viral oncoprotein Tip activates transcription in T cells.
- To determine if Tip utilizes the MAPK or MRTF pathways to activate SRF.
- To elucidate the role of actin dynamics and upstream signaling in Tip-induced transcription.
Main Methods:
- Luciferase reporter assays to measure SRE and MRTF:SRF activity.
- Overexpression of dominant-negative MAL to inhibit MRTF function.
- Manipulation of actin polymerization state.
- Assessment of Rho-family GTPase Rac and Src-family kinase Lck involvement.
Main Results:
- Tip activated both SRE and MRTF:SRF reporters in Jurkat T cells.
- Tip-induced SRE activation was independent of the MAPK pathway.
- Tip-mediated MRTF:SRF activation required MAL, monomeric actin, Rac, and Lck.
- Tip's interaction with Lck initiated the signaling cascade.
Conclusions:
- Tip activates SRF-dependent transcription in T cells through the MRTF:SRF pathway, involving actin dynamics.
- The Rho GTPase Rac and Src-family kinase Lck are crucial upstream regulators of Tip-induced MRTF:SRF activity.
- This study reveals a novel mechanism of viral oncogenesis mediated by the manipulation of actin-regulated transcription in T cells.
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