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A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells

Impaired DNA damage responses are associated with several diseases, including pregnancy complications. Recent research identified an ATM-kinase dependent function for the nuclear isoform of the receptor for advanced glycation end-products (RAGE) during double strand break (DSB)-repair. RAGE contribu...

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Autores principales: Tsai, Kary Y.F., Tullis, Benton, Breithaupt, Katrina L., Fowers, Rylan, Jones, Nelson, Grajeda, Samuel, Reynolds, Paul R., Arroyo, Juan A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069300/
https://www.ncbi.nlm.nih.gov/pubmed/33918759
http://dx.doi.org/10.3390/cells10040857
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author Tsai, Kary Y.F.
Tullis, Benton
Breithaupt, Katrina L.
Fowers, Rylan
Jones, Nelson
Grajeda, Samuel
Reynolds, Paul R.
Arroyo, Juan A.
author_facet Tsai, Kary Y.F.
Tullis, Benton
Breithaupt, Katrina L.
Fowers, Rylan
Jones, Nelson
Grajeda, Samuel
Reynolds, Paul R.
Arroyo, Juan A.
author_sort Tsai, Kary Y.F.
collection PubMed
description Impaired DNA damage responses are associated with several diseases, including pregnancy complications. Recent research identified an ATM-kinase dependent function for the nuclear isoform of the receptor for advanced glycation end-products (RAGE) during double strand break (DSB)-repair. RAGE contributes to end-resectioning of broken DNA sites by binding with the MRE11-Rad50-Nbs1 (MRN) complex. Placental research is limited regarding the impact of genomic instability and the mechanism for potential repair. We tested the hypothesis regarding the involvement of RAGE during the repair of placental DNA-DSBs. We first identified that the pregnancy complications of PE and preterm labor (PTL) experience loss of genomic integrity and an in vitro trophoblast cell model was used to characterize trophoblast DSBs. Colocalized immunofluorescence of γ-H2AX and RAGE support the potential involvement of RAGE in cellular responses to DNA-DSBs. Immunoblotting for both molecules in PE and PTL placenta samples and in trophoblast cells validated a connection. Co-immunoprecipitation studies revealed interactions between RAGE and pATM and MRE11 during DNA-DSBs. Reduced cellular invasion confirmed the role of genomic instability in trophoblastic function. Collectively, these experiments identified genomic instability in pregnancy complications, the impact of defective DNA on trophoblast function, and a possible RAGE-mediated mechanism during DNA-DSB repair.
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spelling pubmed-80693002021-04-26 A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells Tsai, Kary Y.F. Tullis, Benton Breithaupt, Katrina L. Fowers, Rylan Jones, Nelson Grajeda, Samuel Reynolds, Paul R. Arroyo, Juan A. Cells Article Impaired DNA damage responses are associated with several diseases, including pregnancy complications. Recent research identified an ATM-kinase dependent function for the nuclear isoform of the receptor for advanced glycation end-products (RAGE) during double strand break (DSB)-repair. RAGE contributes to end-resectioning of broken DNA sites by binding with the MRE11-Rad50-Nbs1 (MRN) complex. Placental research is limited regarding the impact of genomic instability and the mechanism for potential repair. We tested the hypothesis regarding the involvement of RAGE during the repair of placental DNA-DSBs. We first identified that the pregnancy complications of PE and preterm labor (PTL) experience loss of genomic integrity and an in vitro trophoblast cell model was used to characterize trophoblast DSBs. Colocalized immunofluorescence of γ-H2AX and RAGE support the potential involvement of RAGE in cellular responses to DNA-DSBs. Immunoblotting for both molecules in PE and PTL placenta samples and in trophoblast cells validated a connection. Co-immunoprecipitation studies revealed interactions between RAGE and pATM and MRE11 during DNA-DSBs. Reduced cellular invasion confirmed the role of genomic instability in trophoblastic function. Collectively, these experiments identified genomic instability in pregnancy complications, the impact of defective DNA on trophoblast function, and a possible RAGE-mediated mechanism during DNA-DSB repair. MDPI 2021-04-09 /pmc/articles/PMC8069300/ /pubmed/33918759 http://dx.doi.org/10.3390/cells10040857 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
Tsai, Kary Y.F.
Tullis, Benton
Breithaupt, Katrina L.
Fowers, Rylan
Jones, Nelson
Grajeda, Samuel
Reynolds, Paul R.
Arroyo, Juan A.
A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title_full A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title_fullStr A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title_full_unstemmed A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title_short A Role for RAGE in DNA Double Strand Breaks (DSBs) Detected in Pathological Placentas and Trophoblast Cells
title_sort role for rage in dna double strand breaks (dsbs) detected in pathological placentas and trophoblast cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069300/
https://www.ncbi.nlm.nih.gov/pubmed/33918759
http://dx.doi.org/10.3390/cells10040857
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