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NBS1 interacts with Notch signaling in neuronal homeostasis

NBS1 is a critical component of the MRN (MRE11/RAD50/NBS1) complex, which regulates ATM- and ATR-mediated DNA damage response (DDR) pathways. Mutations in NBS1 cause the human genomic instability syndrome Nijmegen Breakage Syndrome (NBS), of which neuronal deficits, including microcephaly and intell...

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Autores principales: Zhou, Zhong-Wei, Kirtay, Murat, Schneble, Nadine, Yakoub, George, Ding, Mingmei, Rüdiger, Tina, Siniuk, Kanstantsin, Lu, Ruiqing, Jiang, Yi-Nan, Li, Tang-Liang, Kaether, Christoph, Barzilai, Ari, Wang, Zhao-Qi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7641754/
https://www.ncbi.nlm.nih.gov/pubmed/33010171
http://dx.doi.org/10.1093/nar/gkaa716
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author Zhou, Zhong-Wei
Kirtay, Murat
Schneble, Nadine
Yakoub, George
Ding, Mingmei
Rüdiger, Tina
Siniuk, Kanstantsin
Lu, Ruiqing
Jiang, Yi-Nan
Li, Tang-Liang
Kaether, Christoph
Barzilai, Ari
Wang, Zhao-Qi
author_facet Zhou, Zhong-Wei
Kirtay, Murat
Schneble, Nadine
Yakoub, George
Ding, Mingmei
Rüdiger, Tina
Siniuk, Kanstantsin
Lu, Ruiqing
Jiang, Yi-Nan
Li, Tang-Liang
Kaether, Christoph
Barzilai, Ari
Wang, Zhao-Qi
author_sort Zhou, Zhong-Wei
collection PubMed
description NBS1 is a critical component of the MRN (MRE11/RAD50/NBS1) complex, which regulates ATM- and ATR-mediated DNA damage response (DDR) pathways. Mutations in NBS1 cause the human genomic instability syndrome Nijmegen Breakage Syndrome (NBS), of which neuronal deficits, including microcephaly and intellectual disability, are classical hallmarks. Given its function in the DDR to ensure proper proliferation and prevent death of replicating cells, NBS1 is essential for life. Here we show that, unexpectedly, Nbs1 deletion is dispensable for postmitotic neurons, but compromises their arborization and migration due to dysregulated Notch signaling. We find that Nbs1 interacts with NICD-RBPJ, the effector of Notch signaling, and inhibits Notch activity. Genetic ablation or pharmaceutical inhibition of Notch signaling rescues the maturation and migration defects of Nbs1-deficient neurons in vitro and in vivo. Upregulation of Notch by Nbs1 deletion is independent of the key DDR downstream effector p53 and inactivation of each MRN component produces a different pattern of Notch activity and distinct neuronal defects. These data indicate that neuronal defects and aberrant Notch activity in Nbs1-deficient cells are unlikely to be a direct consequence of loss of MRN-mediated DDR function. This study discloses a novel function of NBS1 in crosstalk with the Notch pathway in neuron development.
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spelling pubmed-76417542020-11-10 NBS1 interacts with Notch signaling in neuronal homeostasis Zhou, Zhong-Wei Kirtay, Murat Schneble, Nadine Yakoub, George Ding, Mingmei Rüdiger, Tina Siniuk, Kanstantsin Lu, Ruiqing Jiang, Yi-Nan Li, Tang-Liang Kaether, Christoph Barzilai, Ari Wang, Zhao-Qi Nucleic Acids Res Genome Integrity, Repair and Replication NBS1 is a critical component of the MRN (MRE11/RAD50/NBS1) complex, which regulates ATM- and ATR-mediated DNA damage response (DDR) pathways. Mutations in NBS1 cause the human genomic instability syndrome Nijmegen Breakage Syndrome (NBS), of which neuronal deficits, including microcephaly and intellectual disability, are classical hallmarks. Given its function in the DDR to ensure proper proliferation and prevent death of replicating cells, NBS1 is essential for life. Here we show that, unexpectedly, Nbs1 deletion is dispensable for postmitotic neurons, but compromises their arborization and migration due to dysregulated Notch signaling. We find that Nbs1 interacts with NICD-RBPJ, the effector of Notch signaling, and inhibits Notch activity. Genetic ablation or pharmaceutical inhibition of Notch signaling rescues the maturation and migration defects of Nbs1-deficient neurons in vitro and in vivo. Upregulation of Notch by Nbs1 deletion is independent of the key DDR downstream effector p53 and inactivation of each MRN component produces a different pattern of Notch activity and distinct neuronal defects. These data indicate that neuronal defects and aberrant Notch activity in Nbs1-deficient cells are unlikely to be a direct consequence of loss of MRN-mediated DDR function. This study discloses a novel function of NBS1 in crosstalk with the Notch pathway in neuron development. Oxford University Press 2020-10-03 /pmc/articles/PMC7641754/ /pubmed/33010171 http://dx.doi.org/10.1093/nar/gkaa716 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Genome Integrity, Repair and Replication
Zhou, Zhong-Wei
Kirtay, Murat
Schneble, Nadine
Yakoub, George
Ding, Mingmei
Rüdiger, Tina
Siniuk, Kanstantsin
Lu, Ruiqing
Jiang, Yi-Nan
Li, Tang-Liang
Kaether, Christoph
Barzilai, Ari
Wang, Zhao-Qi
NBS1 interacts with Notch signaling in neuronal homeostasis
title NBS1 interacts with Notch signaling in neuronal homeostasis
title_full NBS1 interacts with Notch signaling in neuronal homeostasis
title_fullStr NBS1 interacts with Notch signaling in neuronal homeostasis
title_full_unstemmed NBS1 interacts with Notch signaling in neuronal homeostasis
title_short NBS1 interacts with Notch signaling in neuronal homeostasis
title_sort nbs1 interacts with notch signaling in neuronal homeostasis
topic Genome Integrity, Repair and Replication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7641754/
https://www.ncbi.nlm.nih.gov/pubmed/33010171
http://dx.doi.org/10.1093/nar/gkaa716
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