Interaction of transcription factor FoxO3 with histone acetyltransferase complex subunit TRRAP modulates gene expression and apoptosis
Please always quote using this URN: urn:nbn:de:bvb:20-opus-299820
- Forkhead box O (FoxO) transcription factors are conserved proteins involved in the regulation of life span and age-related diseases, such as diabetes and cancer. Stress stimuli or growth factor deprivation promotes nuclear localization and activation of FoxO proteins, which—depending on the cellular context—can lead to cell cycle arrest or apoptosis. In endothelial cells (ECs), they further regulate angiogenesis and may promote inflammation and vessel destabilization implicating a role of FoxOs in vascular diseases. In several cancers, FoxOsForkhead box O (FoxO) transcription factors are conserved proteins involved in the regulation of life span and age-related diseases, such as diabetes and cancer. Stress stimuli or growth factor deprivation promotes nuclear localization and activation of FoxO proteins, which—depending on the cellular context—can lead to cell cycle arrest or apoptosis. In endothelial cells (ECs), they further regulate angiogenesis and may promote inflammation and vessel destabilization implicating a role of FoxOs in vascular diseases. In several cancers, FoxOs exert a tumor-suppressive function by regulating proliferation and survival. We and others have previously shown that FoxOs can regulate these processes via two different mechanisms: by direct binding to forkhead-responsive elements at the promoter of target genes or by a poorly understood alternative process that does not require direct DNA binding and regulates key targets in primary human ECs. Here, we performed an interaction study in ECs to identify new nuclear FoxO3 interaction partners that might contribute to FoxO-dependent gene regulation. Mass spectrometry analysis of FoxO3-interacting proteins revealed transformation/transcription domain–associated protein (TRRAP), a member of multiple histone acetyltransferase complexes, as a novel binding partner of FoxO family proteins. We demonstrate that TRRAP is required to support FoxO3 transactivation and FoxO3-dependent G1 arrest and apoptosis in ECs via transcriptional activation of the cyclin-dependent kinase inhibitor p27\(^{kip1}\) and the proapoptotic B-cell lymphoma 2 family member, BIM. Moreover, FoxO–TRRAP interaction could explain FoxO-induced alternative gene regulation via TRRAP-dependent recruitment to target promoters lacking forkhead-responsive element sequences.…
Author: | Lorenza Fusi, Rupesh Paudel, Katharina Meder, Andreas Schlosser, David Schrama, Matthias Goebeler, Marc Schmidt |
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URN: | urn:nbn:de:bvb:20-opus-299820 |
Document Type: | Journal article |
Faculties: | Medizinische Fakultät / Klinik und Poliklinik für Dermatologie, Venerologie und Allergologie |
Fakultät für Biologie / Rudolf-Virchow-Zentrum | |
Language: | English |
Parent Title (English): | Journal of Biological Chemistry |
Year of Completion: | 2022 |
Volume: | 298 |
Issue: | 3 |
Article Number: | 101714 |
Source: | Journal of Biological Chemistry 2022, 298(3):101714. DOI: 10.1016/j.jbc.2022.101714 |
DOI: | https://doi.org/10.1016/j.jbc.2022.101714 |
Dewey Decimal Classification: | 6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit |
Tag: | FoxO3; TRRAP; transcription factors |
Release Date: | 2023/03/10 |
Collections: | Open-Access-Publikationsfonds / Förderzeitraum 2022 |
Licence (German): | CC BY: Creative-Commons-Lizenz: Namensnennung 4.0 International |