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Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading

Most studies of cohesin function consider the Stromalin Antigen (STAG/SA) proteins as core complex members given their ubiquitous interaction with the cohesin ring. Here, we provide functional data to support the notion that the SA subunit is not a mere passenger in this structure, but instead plays...

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Autores principales: Porter, Hayley, Li, Yang, Neguembor, Maria Victoria, Beltran, Manuel, Varsally, Wazeer, Martin, Laura, Cornejo, Manuel Tavares, Pezić, Dubravka, Bhamra, Amandeep, Surinova, Silvia, Jenner, Richard G, Cosma, Maria Pia, Hadjur, Suzana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238091/
https://www.ncbi.nlm.nih.gov/pubmed/37010886
http://dx.doi.org/10.7554/eLife.79386
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author Porter, Hayley
Li, Yang
Neguembor, Maria Victoria
Beltran, Manuel
Varsally, Wazeer
Martin, Laura
Cornejo, Manuel Tavares
Pezić, Dubravka
Bhamra, Amandeep
Surinova, Silvia
Jenner, Richard G
Cosma, Maria Pia
Hadjur, Suzana
author_facet Porter, Hayley
Li, Yang
Neguembor, Maria Victoria
Beltran, Manuel
Varsally, Wazeer
Martin, Laura
Cornejo, Manuel Tavares
Pezić, Dubravka
Bhamra, Amandeep
Surinova, Silvia
Jenner, Richard G
Cosma, Maria Pia
Hadjur, Suzana
author_sort Porter, Hayley
collection PubMed
description Most studies of cohesin function consider the Stromalin Antigen (STAG/SA) proteins as core complex members given their ubiquitous interaction with the cohesin ring. Here, we provide functional data to support the notion that the SA subunit is not a mere passenger in this structure, but instead plays a key role in the localization of cohesin to diverse biological processes and promotes loading of the complex at these sites. We show that in cells acutely depleted for RAD21, SA proteins remain bound to chromatin, cluster in 3D and interact with CTCF, as well as with a wide range of RNA binding proteins involved in multiple RNA processing mechanisms. Accordingly, SA proteins interact with RNA, and R-loops, even in the absence of cohesin. Our results place SA1 on chromatin upstream of the cohesin ring and reveal a role for SA1 in cohesin loading which is independent of NIPBL, the canonical cohesin loader. We propose that SA1 takes advantage of structural R-loop platforms to link cohesin loading and chromatin structure with diverse functions. Since SA proteins are pan-cancer targets, and R-loops play an increasingly prevalent role in cancer biology, our results have important implications for the mechanistic understanding of SA proteins in cancer and disease.
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spelling pubmed-102380912023-06-03 Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading Porter, Hayley Li, Yang Neguembor, Maria Victoria Beltran, Manuel Varsally, Wazeer Martin, Laura Cornejo, Manuel Tavares Pezić, Dubravka Bhamra, Amandeep Surinova, Silvia Jenner, Richard G Cosma, Maria Pia Hadjur, Suzana eLife Cell Biology Most studies of cohesin function consider the Stromalin Antigen (STAG/SA) proteins as core complex members given their ubiquitous interaction with the cohesin ring. Here, we provide functional data to support the notion that the SA subunit is not a mere passenger in this structure, but instead plays a key role in the localization of cohesin to diverse biological processes and promotes loading of the complex at these sites. We show that in cells acutely depleted for RAD21, SA proteins remain bound to chromatin, cluster in 3D and interact with CTCF, as well as with a wide range of RNA binding proteins involved in multiple RNA processing mechanisms. Accordingly, SA proteins interact with RNA, and R-loops, even in the absence of cohesin. Our results place SA1 on chromatin upstream of the cohesin ring and reveal a role for SA1 in cohesin loading which is independent of NIPBL, the canonical cohesin loader. We propose that SA1 takes advantage of structural R-loop platforms to link cohesin loading and chromatin structure with diverse functions. Since SA proteins are pan-cancer targets, and R-loops play an increasingly prevalent role in cancer biology, our results have important implications for the mechanistic understanding of SA proteins in cancer and disease. eLife Sciences Publications, Ltd 2023-04-03 /pmc/articles/PMC10238091/ /pubmed/37010886 http://dx.doi.org/10.7554/eLife.79386 Text en © 2023, Porter, Li et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Porter, Hayley
Li, Yang
Neguembor, Maria Victoria
Beltran, Manuel
Varsally, Wazeer
Martin, Laura
Cornejo, Manuel Tavares
Pezić, Dubravka
Bhamra, Amandeep
Surinova, Silvia
Jenner, Richard G
Cosma, Maria Pia
Hadjur, Suzana
Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title_full Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title_fullStr Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title_full_unstemmed Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title_short Cohesin-independent STAG proteins interact with RNA and R-loops and promote complex loading
title_sort cohesin-independent stag proteins interact with rna and r-loops and promote complex loading
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238091/
https://www.ncbi.nlm.nih.gov/pubmed/37010886
http://dx.doi.org/10.7554/eLife.79386
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