Cargando…

Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry

Respiratory Syncytial Virus (RSV) causes severe inflammation and airway pathology in children and the elderly by infecting the epithelial cells of the upper and lower respiratory tract. RSV replication is sensed by intracellular pattern recognition receptors upstream of the IRF and NF-κB transcripti...

Descripción completa

Detalles Bibliográficos
Autores principales: Mann, Morgan, Roberts, David S., Zhu, Yanlong, Li, Yi, Zhou, Jia, Ge, Ying, Brasier, Allan R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000986/
https://www.ncbi.nlm.nih.gov/pubmed/33799525
http://dx.doi.org/10.3390/v13030454
_version_ 1783671124271300608
author Mann, Morgan
Roberts, David S.
Zhu, Yanlong
Li, Yi
Zhou, Jia
Ge, Ying
Brasier, Allan R.
author_facet Mann, Morgan
Roberts, David S.
Zhu, Yanlong
Li, Yi
Zhou, Jia
Ge, Ying
Brasier, Allan R.
author_sort Mann, Morgan
collection PubMed
description Respiratory Syncytial Virus (RSV) causes severe inflammation and airway pathology in children and the elderly by infecting the epithelial cells of the upper and lower respiratory tract. RSV replication is sensed by intracellular pattern recognition receptors upstream of the IRF and NF-κB transcription factors. These proteins coordinate an innate inflammatory response via Bromodomain-containing protein 4 (BRD4), a protein that functions as a scaffold for unknown transcriptional regulators. To better understand the pleiotropic regulatory function of BRD4, we examine the BRD4 interactome and identify how RSV infection dynamically alters it. To accomplish these goals, we leverage native immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) mass spectrometry to examine BRD4 complexes isolated from human alveolar epithelial cells in the absence or presence of RSV infection. In addition, we explore the role of BRD4’s acetyl-lysine binding bromodomains in mediating these interactions by using a highly selective competitive bromodomain inhibitor. We identify 101 proteins that are significantly enriched in the BRD4 complex and are responsive to both RSV-infection and BRD4 inhibition. These proteins are highly enriched in transcription factors and transcriptional coactivators. Among them, we identify members of the AP1 transcription factor complex, a complex important in innate signaling and cell stress responses. We independently confirm the BRD4/AP1 interaction in primary human small airway epithelial cells. We conclude that BRD4 recruits multiple transcription factors during RSV infection in a manner dependent on acetyl-lysine binding domain interactions. This data suggests that BRD4 recruits transcription factors to target its RNA processing complex to regulate gene expression in innate immunity and inflammation.
format Online
Article
Text
id pubmed-8000986
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80009862021-03-28 Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry Mann, Morgan Roberts, David S. Zhu, Yanlong Li, Yi Zhou, Jia Ge, Ying Brasier, Allan R. Viruses Article Respiratory Syncytial Virus (RSV) causes severe inflammation and airway pathology in children and the elderly by infecting the epithelial cells of the upper and lower respiratory tract. RSV replication is sensed by intracellular pattern recognition receptors upstream of the IRF and NF-κB transcription factors. These proteins coordinate an innate inflammatory response via Bromodomain-containing protein 4 (BRD4), a protein that functions as a scaffold for unknown transcriptional regulators. To better understand the pleiotropic regulatory function of BRD4, we examine the BRD4 interactome and identify how RSV infection dynamically alters it. To accomplish these goals, we leverage native immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) mass spectrometry to examine BRD4 complexes isolated from human alveolar epithelial cells in the absence or presence of RSV infection. In addition, we explore the role of BRD4’s acetyl-lysine binding bromodomains in mediating these interactions by using a highly selective competitive bromodomain inhibitor. We identify 101 proteins that are significantly enriched in the BRD4 complex and are responsive to both RSV-infection and BRD4 inhibition. These proteins are highly enriched in transcription factors and transcriptional coactivators. Among them, we identify members of the AP1 transcription factor complex, a complex important in innate signaling and cell stress responses. We independently confirm the BRD4/AP1 interaction in primary human small airway epithelial cells. We conclude that BRD4 recruits multiple transcription factors during RSV infection in a manner dependent on acetyl-lysine binding domain interactions. This data suggests that BRD4 recruits transcription factors to target its RNA processing complex to regulate gene expression in innate immunity and inflammation. MDPI 2021-03-11 /pmc/articles/PMC8000986/ /pubmed/33799525 http://dx.doi.org/10.3390/v13030454 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Mann, Morgan
Roberts, David S.
Zhu, Yanlong
Li, Yi
Zhou, Jia
Ge, Ying
Brasier, Allan R.
Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title_full Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title_fullStr Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title_full_unstemmed Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title_short Discovery of RSV-Induced BRD4 Protein Interactions Using Native Immunoprecipitation and Parallel Accumulation—Serial Fragmentation (PASEF) Mass Spectrometry
title_sort discovery of rsv-induced brd4 protein interactions using native immunoprecipitation and parallel accumulation—serial fragmentation (pasef) mass spectrometry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000986/
https://www.ncbi.nlm.nih.gov/pubmed/33799525
http://dx.doi.org/10.3390/v13030454
work_keys_str_mv AT mannmorgan discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT robertsdavids discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT zhuyanlong discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT liyi discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT zhoujia discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT geying discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry
AT brasierallanr discoveryofrsvinducedbrd4proteininteractionsusingnativeimmunoprecipitationandparallelaccumulationserialfragmentationpasefmassspectrometry