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Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin

Noncanonical base pairing between four guanines (G) within single-stranded G-rich sequences leads to formation of а G-quartet. Self-stacking of G-quartets results in a columnar four-stranded DNA structure known as the G-quadruplex (G4 or G4-DNA). In cancer cells, G4-DNA regulates multiple DNA-depend...

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Autores principales: Escarcega, Rocio Diaz, Patil, Abhijeet A., Moruno-Manchon, Jose F., Urayama, Akihiko, Marrelli, Sean P., Kim, Nayun, Monchaud, David, McCullough, Louise D., Tsvetkov, Andrey S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534229/
https://www.ncbi.nlm.nih.gov/pubmed/37579947
http://dx.doi.org/10.1016/j.jbc.2023.105157
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author Escarcega, Rocio Diaz
Patil, Abhijeet A.
Moruno-Manchon, Jose F.
Urayama, Akihiko
Marrelli, Sean P.
Kim, Nayun
Monchaud, David
McCullough, Louise D.
Tsvetkov, Andrey S.
author_facet Escarcega, Rocio Diaz
Patil, Abhijeet A.
Moruno-Manchon, Jose F.
Urayama, Akihiko
Marrelli, Sean P.
Kim, Nayun
Monchaud, David
McCullough, Louise D.
Tsvetkov, Andrey S.
author_sort Escarcega, Rocio Diaz
collection PubMed
description Noncanonical base pairing between four guanines (G) within single-stranded G-rich sequences leads to formation of а G-quartet. Self-stacking of G-quartets results in a columnar four-stranded DNA structure known as the G-quadruplex (G4 or G4-DNA). In cancer cells, G4-DNA regulates multiple DNA-dependent processes, including transcription, replication, and telomere function. How G4s function in neurons is poorly understood. Here, we performed a genome-wide gene expression analysis (RNA-Seq) to identify genes modulated by a G4-DNA ligand, pyridostatin (PDS), in primary cultured neurons. PDS promotes stabilization of G4 structures, thus allowing us to define genes directly or indirectly responsive to G4 regulation. We found that 901 genes were differentially expressed in neurons treated with PDS out of a total of 18,745 genes with measured expression. Of these, 505 genes were downregulated and 396 genes were upregulated and included gene networks regulating p53 signaling, the immune response, learning and memory, and cellular senescence. Within the p53 network, the E3 ubiquitin ligase Pirh2 (Rchy1), a modulator of DNA damage responses, was upregulated by PDS. Ectopically overexpressing Pirh2 promoted the formation of DNA double-strand breaks, suggesting a new DNA damage mechanism in neurons that is regulated by G4 stabilization. Pirh2 downregulated DDX21, an RNA helicase that unfolds G4-RNA and R-loops. Finally, we demonstrated that Pirh2 increased G4-DNA levels in the neuronal nucleolus. Our data reveal the genes that are responsive to PDS treatment and suggest similar transcriptional regulation by endogenous G4-DNA ligands. They also connect G4-dependent regulation of transcription and DNA damage mechanisms in neuronal cells.
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spelling pubmed-105342292023-09-29 Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin Escarcega, Rocio Diaz Patil, Abhijeet A. Moruno-Manchon, Jose F. Urayama, Akihiko Marrelli, Sean P. Kim, Nayun Monchaud, David McCullough, Louise D. Tsvetkov, Andrey S. J Biol Chem Research Article Noncanonical base pairing between four guanines (G) within single-stranded G-rich sequences leads to formation of а G-quartet. Self-stacking of G-quartets results in a columnar four-stranded DNA structure known as the G-quadruplex (G4 or G4-DNA). In cancer cells, G4-DNA regulates multiple DNA-dependent processes, including transcription, replication, and telomere function. How G4s function in neurons is poorly understood. Here, we performed a genome-wide gene expression analysis (RNA-Seq) to identify genes modulated by a G4-DNA ligand, pyridostatin (PDS), in primary cultured neurons. PDS promotes stabilization of G4 structures, thus allowing us to define genes directly or indirectly responsive to G4 regulation. We found that 901 genes were differentially expressed in neurons treated with PDS out of a total of 18,745 genes with measured expression. Of these, 505 genes were downregulated and 396 genes were upregulated and included gene networks regulating p53 signaling, the immune response, learning and memory, and cellular senescence. Within the p53 network, the E3 ubiquitin ligase Pirh2 (Rchy1), a modulator of DNA damage responses, was upregulated by PDS. Ectopically overexpressing Pirh2 promoted the formation of DNA double-strand breaks, suggesting a new DNA damage mechanism in neurons that is regulated by G4 stabilization. Pirh2 downregulated DDX21, an RNA helicase that unfolds G4-RNA and R-loops. Finally, we demonstrated that Pirh2 increased G4-DNA levels in the neuronal nucleolus. Our data reveal the genes that are responsive to PDS treatment and suggest similar transcriptional regulation by endogenous G4-DNA ligands. They also connect G4-dependent regulation of transcription and DNA damage mechanisms in neuronal cells. American Society for Biochemistry and Molecular Biology 2023-08-12 /pmc/articles/PMC10534229/ /pubmed/37579947 http://dx.doi.org/10.1016/j.jbc.2023.105157 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Escarcega, Rocio Diaz
Patil, Abhijeet A.
Moruno-Manchon, Jose F.
Urayama, Akihiko
Marrelli, Sean P.
Kim, Nayun
Monchaud, David
McCullough, Louise D.
Tsvetkov, Andrey S.
Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title_full Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title_fullStr Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title_full_unstemmed Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title_short Pirh2-dependent DNA damage in neurons induced by the G-quadruplex ligand pyridostatin
title_sort pirh2-dependent dna damage in neurons induced by the g-quadruplex ligand pyridostatin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534229/
https://www.ncbi.nlm.nih.gov/pubmed/37579947
http://dx.doi.org/10.1016/j.jbc.2023.105157
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