Flow cytometry-based FRET identifies binding intensities in PPARγ1 protein-protein interactions in living cells

التفاصيل البيبلوغرافية
العنوان: Flow cytometry-based FRET identifies binding intensities in PPARγ1 protein-protein interactions in living cells
المؤلفون: Eugeny A. Ermilov, Annegret Preuß, Tilo Knape, Steffen Hackbarth, Tobias Bornhütter, Beate Röder, Michael Schindler, Laura Kuchler, Sandra Gunne, Bernhard Brüne, Verena Trümper, Lázló Ujlaky-Nagy, Michael J. Parnham, Andreas von Knethen, Anne Schäfer, György Vereb
المصدر: Theranostics
بيانات النشر: Ivyspring International Publisher, 2019.
سنة النشر: 2019
مصطلحات موضوعية: 0301 basic medicine, Gene isoform, NHR co-factors protein-protein interactions, Protein domain, Medicine (miscellaneous), flow cytometry-based FRET assay, Protein–protein interaction, Flow cytometry, Mice, 03 medical and health sciences, Transactivation, Protein Domains, RXRα, Fluorescence Resonance Energy Transfer, medicine, Animals, Humans, Nuclear Receptor Co-Repressor 1, Pharmacology, Toxicology and Pharmaceutics (miscellaneous), N-CoR2, Retinoid X Receptor alpha, co-localization analysis, 030102 biochemistry & molecular biology, medicine.diagnostic_test, Chemistry, binding affinity and intensity, Alternative splicing, HEK 293 cells, Flow Cytometry, Cell biology, PPAR gamma, HEK293 Cells, 030104 developmental biology, Förster resonance energy transfer, FRET, PPARγ1, Dimerization, Protein Binding, Research Paper
الوصف: PPARγ is a pharmacological target in inflammatory and metabolic diseases. Upon agonistic treatment or following antagonism, binding of co-factors is altered, which consequently affects PPARγ-dependent transactivation as well as its DNA-independent properties. Therefore, establishing techniques to characterize these interactions is an important issue in living cells. Methods: Using the FRET pair Clover/mRuby2, we set up a flow cytometry-based FRET assay by analyzing PPARγ1 binding to its heterodimerization partner RXRα. Analyses of PPARγ-reporter and co-localization studies by laser-scanning microscopy validated this system. Refining the system, we created a new readout to distinguish strong from weak interactions, focusing on PPARγ-binding to the co-repressor N-CoR2. Results: We observed high FRET in cells expressing Clover-PPARγ1 and mRuby2-RXRα, but no FRET when cells express a mRuby2-RXRα deletion mutant, lacking the PPARγ interaction domain. Focusing on the co-repressor N-CoR2, we identified in HEK293T cells the new splice variant N-CoR2-ΔID1-exon. Overexpressing this isoform tagged with mRuby2, revealed no binding to Clover-PPARγ1, nor in murine J774A.1 macrophages. In HEK293T cells, binding was even lower in comparison to N-CoR2 constructs in which domains established to mediate interaction with PPARγ binding are deleted. These data suggest a possible role of N-CoR2-ΔID1-exon as a dominant negative variant. Because binding to N-CoR2-mRuby2 was not altered following activation or antagonism of Clover-PPARγ1, we determined the effect of pharmacological treatment on FRET intensity. Therefore, we calculated flow cytometry-based FRET efficiencies based on our flow cytometry data. As with PPARγ antagonism, PPARγ agonist treatment did not prevent binding of N-CoR2. Conclusion: Our system allows the close determination of protein-protein interactions with a special focus on binding intensity, allowing this system to characterize the role of protein domains as well as the effect of pharmacological agents on protein-protein interactions.
تدمد: 1838-7640
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2f6b93d4c297068d0e7d0f79919e0114Test
https://doi.org/10.7150/thno.29367Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....2f6b93d4c297068d0e7d0f79919e0114
قاعدة البيانات: OpenAIRE