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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Nature Portfolio
2020
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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) |
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Science Q |
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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 |
work_keys_str_mv |
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