Cargando…

BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming

Epigenetic reprogramming to pluripotency requires extensive remodeling of chromatin landscapes to silence existing cell-type-specific genes and activate pluripotency genes. ATP-dependent chromatin remodeling complexes are important regulators of chromatin structure and gene expression; however, the...

Descripción completa

Detalles Bibliográficos
Autores principales: Sevinç, Kenan, Sevinç, Gülben Gürhan, Cavga, Ayşe Derya, Philpott, Martin, Kelekçi, Simge, Can, Hazal, Cribbs, Adam P., Yıldız, Abdullah Burak, Yılmaz, Alperen, Ayar, Enes Sefa, Arabacı, Dilşad H., Dunford, James E., Ata, Deniz, Sigua, Logan H., Qi, Jun, Oppermann, Udo, Onder, Tamer T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9768578/
https://www.ncbi.nlm.nih.gov/pubmed/36332631
http://dx.doi.org/10.1016/j.stemcr.2022.10.005
_version_ 1784854200980602880
author Sevinç, Kenan
Sevinç, Gülben Gürhan
Cavga, Ayşe Derya
Philpott, Martin
Kelekçi, Simge
Can, Hazal
Cribbs, Adam P.
Yıldız, Abdullah Burak
Yılmaz, Alperen
Ayar, Enes Sefa
Arabacı, Dilşad H.
Dunford, James E.
Ata, Deniz
Sigua, Logan H.
Qi, Jun
Oppermann, Udo
Onder, Tamer T.
author_facet Sevinç, Kenan
Sevinç, Gülben Gürhan
Cavga, Ayşe Derya
Philpott, Martin
Kelekçi, Simge
Can, Hazal
Cribbs, Adam P.
Yıldız, Abdullah Burak
Yılmaz, Alperen
Ayar, Enes Sefa
Arabacı, Dilşad H.
Dunford, James E.
Ata, Deniz
Sigua, Logan H.
Qi, Jun
Oppermann, Udo
Onder, Tamer T.
author_sort Sevinç, Kenan
collection PubMed
description Epigenetic reprogramming to pluripotency requires extensive remodeling of chromatin landscapes to silence existing cell-type-specific genes and activate pluripotency genes. ATP-dependent chromatin remodeling complexes are important regulators of chromatin structure and gene expression; however, the role of recently identified Bromodomain-containing protein 9 (BRD9) and the associated non-canonical BRG1-associated factors (ncBAF) complex in reprogramming remains unknown. Here, we show that genetic or chemical inhibition of BRD9, as well as ncBAF complex subunit GLTSCR1, but not the closely related BRD7, increase human somatic cell reprogramming efficiency and can replace KLF4 and c-MYC. We find that BRD9 is dispensable for human induced pluripotent stem cells under primed but not under naive conditions. Mechanistically, BRD9 inhibition downregulates fibroblast-related genes and decreases chromatin accessibility at somatic enhancers. BRD9 maintains the expression of transcriptional regulators MN1 and ZBTB38, both of which impede reprogramming. Collectively, these results establish BRD9 as an important safeguarding factor for somatic cell identity whose inhibition lowers chromatin-based barriers to reprogramming.
format Online
Article
Text
id pubmed-9768578
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-97685782022-12-22 BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming Sevinç, Kenan Sevinç, Gülben Gürhan Cavga, Ayşe Derya Philpott, Martin Kelekçi, Simge Can, Hazal Cribbs, Adam P. Yıldız, Abdullah Burak Yılmaz, Alperen Ayar, Enes Sefa Arabacı, Dilşad H. Dunford, James E. Ata, Deniz Sigua, Logan H. Qi, Jun Oppermann, Udo Onder, Tamer T. Stem Cell Reports Article Epigenetic reprogramming to pluripotency requires extensive remodeling of chromatin landscapes to silence existing cell-type-specific genes and activate pluripotency genes. ATP-dependent chromatin remodeling complexes are important regulators of chromatin structure and gene expression; however, the role of recently identified Bromodomain-containing protein 9 (BRD9) and the associated non-canonical BRG1-associated factors (ncBAF) complex in reprogramming remains unknown. Here, we show that genetic or chemical inhibition of BRD9, as well as ncBAF complex subunit GLTSCR1, but not the closely related BRD7, increase human somatic cell reprogramming efficiency and can replace KLF4 and c-MYC. We find that BRD9 is dispensable for human induced pluripotent stem cells under primed but not under naive conditions. Mechanistically, BRD9 inhibition downregulates fibroblast-related genes and decreases chromatin accessibility at somatic enhancers. BRD9 maintains the expression of transcriptional regulators MN1 and ZBTB38, both of which impede reprogramming. Collectively, these results establish BRD9 as an important safeguarding factor for somatic cell identity whose inhibition lowers chromatin-based barriers to reprogramming. Elsevier 2022-11-03 /pmc/articles/PMC9768578/ /pubmed/36332631 http://dx.doi.org/10.1016/j.stemcr.2022.10.005 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Sevinç, Kenan
Sevinç, Gülben Gürhan
Cavga, Ayşe Derya
Philpott, Martin
Kelekçi, Simge
Can, Hazal
Cribbs, Adam P.
Yıldız, Abdullah Burak
Yılmaz, Alperen
Ayar, Enes Sefa
Arabacı, Dilşad H.
Dunford, James E.
Ata, Deniz
Sigua, Logan H.
Qi, Jun
Oppermann, Udo
Onder, Tamer T.
BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title_full BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title_fullStr BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title_full_unstemmed BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title_short BRD9-containing non-canonical BAF complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
title_sort brd9-containing non-canonical baf complex maintains somatic cell transcriptome and acts as a barrier to human reprogramming
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9768578/
https://www.ncbi.nlm.nih.gov/pubmed/36332631
http://dx.doi.org/10.1016/j.stemcr.2022.10.005
work_keys_str_mv AT sevinckenan brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT sevincgulbengurhan brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT cavgaaysederya brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT philpottmartin brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT kelekcisimge brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT canhazal brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT cribbsadamp brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT yıldızabdullahburak brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT yılmazalperen brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT ayarenessefa brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT arabacıdilsadh brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT dunfordjamese brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT atadeniz brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT sigualoganh brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT qijun brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT oppermannudo brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming
AT ondertamert brd9containingnoncanonicalbafcomplexmaintainssomaticcelltranscriptomeandactsasabarriertohumanreprogramming