ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration
The nucleus is a mechanically stiff organelle of the cell and the DNA damage response protein ATR can localize to the nuclear envelope upon mechanical stress. Here, the authors show that ATR may contribute to the integrity of the nuclear envelope and may play a role in cell migration.
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Nature Portfolio
2020
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oai:doaj.org-article:ef3b7523ea5c4ef99f9147b73d2702d22021-12-02T18:14:31ZATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration10.1038/s41467-020-18580-92041-1723https://doaj.org/article/ef3b7523ea5c4ef99f9147b73d2702d22020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18580-9https://doaj.org/toc/2041-1723The nucleus is a mechanically stiff organelle of the cell and the DNA damage response protein ATR can localize to the nuclear envelope upon mechanical stress. Here, the authors show that ATR may contribute to the integrity of the nuclear envelope and may play a role in cell migration.Gururaj Rao KidiyoorQingsen LiGiulia BastianelloChristopher BruhnIrene GiovannettiAdhil MohamoodGalina V. BeznoussenkoAlexandre MironovMatthew RaabMatthieu PielUmberto RestucciaVittoria MataforaAngela BachiSara BarozziDario ParazzoliEmanuela FrittoliAndrea PalamidessiTito PancieraStefano PiccoloGiorgio ScitaPaolo MaiuriKristina M. HavasZhong-Wei ZhouAmit KumarJiri BartekZhao-Qi WangMarco FoianiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020) |
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Science Q Gururaj Rao Kidiyoor Qingsen Li Giulia Bastianello Christopher Bruhn Irene Giovannetti Adhil Mohamood Galina V. Beznoussenko Alexandre Mironov Matthew Raab Matthieu Piel Umberto Restuccia Vittoria Matafora Angela Bachi Sara Barozzi Dario Parazzoli Emanuela Frittoli Andrea Palamidessi Tito Panciera Stefano Piccolo Giorgio Scita Paolo Maiuri Kristina M. Havas Zhong-Wei Zhou Amit Kumar Jiri Bartek Zhao-Qi Wang Marco Foiani ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
description |
The nucleus is a mechanically stiff organelle of the cell and the DNA damage response protein ATR can localize to the nuclear envelope upon mechanical stress. Here, the authors show that ATR may contribute to the integrity of the nuclear envelope and may play a role in cell migration. |
format |
article |
author |
Gururaj Rao Kidiyoor Qingsen Li Giulia Bastianello Christopher Bruhn Irene Giovannetti Adhil Mohamood Galina V. Beznoussenko Alexandre Mironov Matthew Raab Matthieu Piel Umberto Restuccia Vittoria Matafora Angela Bachi Sara Barozzi Dario Parazzoli Emanuela Frittoli Andrea Palamidessi Tito Panciera Stefano Piccolo Giorgio Scita Paolo Maiuri Kristina M. Havas Zhong-Wei Zhou Amit Kumar Jiri Bartek Zhao-Qi Wang Marco Foiani |
author_facet |
Gururaj Rao Kidiyoor Qingsen Li Giulia Bastianello Christopher Bruhn Irene Giovannetti Adhil Mohamood Galina V. Beznoussenko Alexandre Mironov Matthew Raab Matthieu Piel Umberto Restuccia Vittoria Matafora Angela Bachi Sara Barozzi Dario Parazzoli Emanuela Frittoli Andrea Palamidessi Tito Panciera Stefano Piccolo Giorgio Scita Paolo Maiuri Kristina M. Havas Zhong-Wei Zhou Amit Kumar Jiri Bartek Zhao-Qi Wang Marco Foiani |
author_sort |
Gururaj Rao Kidiyoor |
title |
ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
title_short |
ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
title_full |
ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
title_fullStr |
ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
title_full_unstemmed |
ATR is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
title_sort |
atr is essential for preservation of cell mechanics and nuclear integrity during interstitial migration |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/ef3b7523ea5c4ef99f9147b73d2702d2 |
work_keys_str_mv |
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