TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control

The HUSH complex plays a key role in controlling transcription of viruses and transposable elements. Here, the authors define the biochemical basis of HUSH assembly and show that the TASOR subunit contains a pseudo-PARP domain critical for HUSH-dependent transgene repression and H3K9me3 deposition o...

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Autores principales: Christopher H. Douse, Iva A. Tchasovnikarova, Richard T. Timms, Anna V. Protasio, Marta Seczynska, Daniil M. Prigozhin, Anna Albecka, Jane Wagstaff, James C. Williamson, Stefan M. V. Freund, Paul J. Lehner, Yorgo Modis
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ec9909b7b0774e2691625135a2850ac1
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spelling oai:doaj.org-article:ec9909b7b0774e2691625135a2850ac12021-12-02T17:37:14ZTASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control10.1038/s41467-020-18761-62041-1723https://doaj.org/article/ec9909b7b0774e2691625135a2850ac12020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18761-6https://doaj.org/toc/2041-1723The HUSH complex plays a key role in controlling transcription of viruses and transposable elements. Here, the authors define the biochemical basis of HUSH assembly and show that the TASOR subunit contains a pseudo-PARP domain critical for HUSH-dependent transgene repression and H3K9me3 deposition over targets genome wide.Christopher H. DouseIva A. TchasovnikarovaRichard T. TimmsAnna V. ProtasioMarta SeczynskaDaniil M. PrigozhinAnna AlbeckaJane WagstaffJames C. WilliamsonStefan M. V. FreundPaul J. LehnerYorgo ModisNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Christopher H. Douse
Iva A. Tchasovnikarova
Richard T. Timms
Anna V. Protasio
Marta Seczynska
Daniil M. Prigozhin
Anna Albecka
Jane Wagstaff
James C. Williamson
Stefan M. V. Freund
Paul J. Lehner
Yorgo Modis
TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
description The HUSH complex plays a key role in controlling transcription of viruses and transposable elements. Here, the authors define the biochemical basis of HUSH assembly and show that the TASOR subunit contains a pseudo-PARP domain critical for HUSH-dependent transgene repression and H3K9me3 deposition over targets genome wide.
format article
author Christopher H. Douse
Iva A. Tchasovnikarova
Richard T. Timms
Anna V. Protasio
Marta Seczynska
Daniil M. Prigozhin
Anna Albecka
Jane Wagstaff
James C. Williamson
Stefan M. V. Freund
Paul J. Lehner
Yorgo Modis
author_facet Christopher H. Douse
Iva A. Tchasovnikarova
Richard T. Timms
Anna V. Protasio
Marta Seczynska
Daniil M. Prigozhin
Anna Albecka
Jane Wagstaff
James C. Williamson
Stefan M. V. Freund
Paul J. Lehner
Yorgo Modis
author_sort Christopher H. Douse
title TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
title_short TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
title_full TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
title_fullStr TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
title_full_unstemmed TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
title_sort tasor is a pseudo-parp that directs hush complex assembly and epigenetic transposon control
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ec9909b7b0774e2691625135a2850ac1
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