Cargando…

FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway

Over recent years, several Cys2-His2 (C2H2) domain-containing proteins have emerged as critical players in repairing DNA-double strand breaks. Human FLYWCH1 is a newly characterised nuclear transcription factor with (C2H2)-type zinc-finger DNA-binding domains. Yet, our knowledge about FLYWCH1 is sti...

Descripción completa

Detalles Bibliográficos
Autores principales: Almozyan, Sheema, Coulton, James, Babaei-Jadidi, Roya, Nateri, Abdolrahman S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069811/
https://www.ncbi.nlm.nih.gov/pubmed/33924684
http://dx.doi.org/10.3390/cells10040889
_version_ 1783683324662775808
author Almozyan, Sheema
Coulton, James
Babaei-Jadidi, Roya
Nateri, Abdolrahman S.
author_facet Almozyan, Sheema
Coulton, James
Babaei-Jadidi, Roya
Nateri, Abdolrahman S.
author_sort Almozyan, Sheema
collection PubMed
description Over recent years, several Cys2-His2 (C2H2) domain-containing proteins have emerged as critical players in repairing DNA-double strand breaks. Human FLYWCH1 is a newly characterised nuclear transcription factor with (C2H2)-type zinc-finger DNA-binding domains. Yet, our knowledge about FLYWCH1 is still in its infancy. This study explores the expression, role and regulation of FLYWCH1 in the context of DNA damage and repair. We provide evidence suggesting a potential contribution of FLYWCH1 in facilitating the recruitment of DNA-damage response proteins (DDRPs). We found that FLYWCH1 colocalises with γH2AX in normal fibroblasts and colorectal cancer (CRC) cell lines. Importantly, our results showed that enforced expression of FLYWCH1 induces the expression of γH2AX, ATM and P53 proteins. Using an ATM-knockout (ATM(KO)) model, we indicated that FLYWCH1 mediates the phosphorylation of H2AX (Ser139) independently to ATM expression. On the other hand, the induction of DNA damage using UV-light induces the endogenous expression of FLYWCH1. Conversely, cisplatin treatment reduces the endogenous level of FLYWCH1 in CRC cell lines. Together, our findings uncover a novel FLYWCH1/H2AX phosphorylation axis in steady-state conditions and during the induction of the DNA-damage response (DDR). Although the role of FLYWCH1 within the DDR machinery remains largely uncharacterised and poorly understood, we here report for the first-time findings that implicate FLYWCH1 as a potential participant in the DNA damage response signaling pathways.
format Online
Article
Text
id pubmed-8069811
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80698112021-04-26 FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway Almozyan, Sheema Coulton, James Babaei-Jadidi, Roya Nateri, Abdolrahman S. Cells Article Over recent years, several Cys2-His2 (C2H2) domain-containing proteins have emerged as critical players in repairing DNA-double strand breaks. Human FLYWCH1 is a newly characterised nuclear transcription factor with (C2H2)-type zinc-finger DNA-binding domains. Yet, our knowledge about FLYWCH1 is still in its infancy. This study explores the expression, role and regulation of FLYWCH1 in the context of DNA damage and repair. We provide evidence suggesting a potential contribution of FLYWCH1 in facilitating the recruitment of DNA-damage response proteins (DDRPs). We found that FLYWCH1 colocalises with γH2AX in normal fibroblasts and colorectal cancer (CRC) cell lines. Importantly, our results showed that enforced expression of FLYWCH1 induces the expression of γH2AX, ATM and P53 proteins. Using an ATM-knockout (ATM(KO)) model, we indicated that FLYWCH1 mediates the phosphorylation of H2AX (Ser139) independently to ATM expression. On the other hand, the induction of DNA damage using UV-light induces the endogenous expression of FLYWCH1. Conversely, cisplatin treatment reduces the endogenous level of FLYWCH1 in CRC cell lines. Together, our findings uncover a novel FLYWCH1/H2AX phosphorylation axis in steady-state conditions and during the induction of the DNA-damage response (DDR). Although the role of FLYWCH1 within the DDR machinery remains largely uncharacterised and poorly understood, we here report for the first-time findings that implicate FLYWCH1 as a potential participant in the DNA damage response signaling pathways. MDPI 2021-04-13 /pmc/articles/PMC8069811/ /pubmed/33924684 http://dx.doi.org/10.3390/cells10040889 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Almozyan, Sheema
Coulton, James
Babaei-Jadidi, Roya
Nateri, Abdolrahman S.
FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title_full FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title_fullStr FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title_full_unstemmed FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title_short FLYWCH1, a Multi-Functional Zinc Finger Protein Contributes to the DNA Repair Pathway
title_sort flywch1, a multi-functional zinc finger protein contributes to the dna repair pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069811/
https://www.ncbi.nlm.nih.gov/pubmed/33924684
http://dx.doi.org/10.3390/cells10040889
work_keys_str_mv AT almozyansheema flywch1amultifunctionalzincfingerproteincontributestothednarepairpathway
AT coultonjames flywch1amultifunctionalzincfingerproteincontributestothednarepairpathway
AT babaeijadidiroya flywch1amultifunctionalzincfingerproteincontributestothednarepairpathway
AT nateriabdolrahmans flywch1amultifunctionalzincfingerproteincontributestothednarepairpathway