The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair
Cryptochrome 1 (CRY1) is a transcriptional coregulator associated with the circadian clock. Here the authors reveal that CRY1 is hormone-regulated, stabilized by genomic insult, and promotes DNA repair and cell survival through temporal transcriptional regulation.
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Nature Portfolio
2021
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oai:doaj.org-article:5fde36ecfc1c40aebc4b7e899820784f2021-12-02T14:01:26ZThe circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair10.1038/s41467-020-20513-52041-1723https://doaj.org/article/5fde36ecfc1c40aebc4b7e899820784f2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20513-5https://doaj.org/toc/2041-1723Cryptochrome 1 (CRY1) is a transcriptional coregulator associated with the circadian clock. Here the authors reveal that CRY1 is hormone-regulated, stabilized by genomic insult, and promotes DNA repair and cell survival through temporal transcriptional regulation.Ayesha A. ShafiChris M. McNairJennifer J. McCannMohammed AlshalalfaAnton ShostakTesa M. SeversonYanyun ZhuAndre BergmanNicolas GordonAmy C. MandigoSaswati N. ChandPeter GallagherEmanuela DylgjeriTalya S. LauferIrina A. VasilevskayaMatthew J. SchiewerMichael BrunnerFelix Y. FengWilbert ZwartKaren E. KnudsenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021) |
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Science Q Ayesha A. Shafi Chris M. McNair Jennifer J. McCann Mohammed Alshalalfa Anton Shostak Tesa M. Severson Yanyun Zhu Andre Bergman Nicolas Gordon Amy C. Mandigo Saswati N. Chand Peter Gallagher Emanuela Dylgjeri Talya S. Laufer Irina A. Vasilevskaya Matthew J. Schiewer Michael Brunner Felix Y. Feng Wilbert Zwart Karen E. Knudsen The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
description |
Cryptochrome 1 (CRY1) is a transcriptional coregulator associated with the circadian clock. Here the authors reveal that CRY1 is hormone-regulated, stabilized by genomic insult, and promotes DNA repair and cell survival through temporal transcriptional regulation. |
format |
article |
author |
Ayesha A. Shafi Chris M. McNair Jennifer J. McCann Mohammed Alshalalfa Anton Shostak Tesa M. Severson Yanyun Zhu Andre Bergman Nicolas Gordon Amy C. Mandigo Saswati N. Chand Peter Gallagher Emanuela Dylgjeri Talya S. Laufer Irina A. Vasilevskaya Matthew J. Schiewer Michael Brunner Felix Y. Feng Wilbert Zwart Karen E. Knudsen |
author_facet |
Ayesha A. Shafi Chris M. McNair Jennifer J. McCann Mohammed Alshalalfa Anton Shostak Tesa M. Severson Yanyun Zhu Andre Bergman Nicolas Gordon Amy C. Mandigo Saswati N. Chand Peter Gallagher Emanuela Dylgjeri Talya S. Laufer Irina A. Vasilevskaya Matthew J. Schiewer Michael Brunner Felix Y. Feng Wilbert Zwart Karen E. Knudsen |
author_sort |
Ayesha A. Shafi |
title |
The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
title_short |
The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
title_full |
The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
title_fullStr |
The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
title_full_unstemmed |
The circadian cryptochrome, CRY1, is a pro-tumorigenic factor that rhythmically modulates DNA repair |
title_sort |
circadian cryptochrome, cry1, is a pro-tumorigenic factor that rhythmically modulates dna repair |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/5fde36ecfc1c40aebc4b7e899820784f |
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