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Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas

Genomic instability is a prominent hallmark of cancer, however the mechanisms that drive and sustain this process remain elusive. Research demonstrates that numerous cancers with increased levels of genomic instability ectopically express meiosis-specific genes and undergo meiomitosis, the clash of...

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Autores principales: Gantchev, Jennifer, Messina-Pacheco, Julia, Martínez Villarreal, Amelia, Ramchatesingh, Brandon, Lefrançois, Philippe, Xie, Pingxing, Amar, Laetitia, Xu, Hong Hao, Raveendra, Keerthenan, Sikorski, Daniel, Guerra Ordaz, Daniel Josue, Gill, Raman Preet Kaur, Lambert, Marine, Litvinov, Ivan V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296909/
https://www.ncbi.nlm.nih.gov/pubmed/37371097
http://dx.doi.org/10.3390/cells12121627
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author Gantchev, Jennifer
Messina-Pacheco, Julia
Martínez Villarreal, Amelia
Ramchatesingh, Brandon
Lefrançois, Philippe
Xie, Pingxing
Amar, Laetitia
Xu, Hong Hao
Raveendra, Keerthenan
Sikorski, Daniel
Guerra Ordaz, Daniel Josue
Gill, Raman Preet Kaur
Lambert, Marine
Litvinov, Ivan V.
author_facet Gantchev, Jennifer
Messina-Pacheco, Julia
Martínez Villarreal, Amelia
Ramchatesingh, Brandon
Lefrançois, Philippe
Xie, Pingxing
Amar, Laetitia
Xu, Hong Hao
Raveendra, Keerthenan
Sikorski, Daniel
Guerra Ordaz, Daniel Josue
Gill, Raman Preet Kaur
Lambert, Marine
Litvinov, Ivan V.
author_sort Gantchev, Jennifer
collection PubMed
description Genomic instability is a prominent hallmark of cancer, however the mechanisms that drive and sustain this process remain elusive. Research demonstrates that numerous cancers with increased levels of genomic instability ectopically express meiosis-specific genes and undergo meiomitosis, the clash of mitotic and meiotic processes. These meiotic genes may represent novel therapeutic targets for the treatment of cancer. We studied the relationship between the expression of the meiosis protein HORMAD1 and genomic instability in squamous cell carcinomas (SCCs). First, we assessed markers of DNA damage and genomic instability following knockdown and overexpression of HORMAD1 in different cell lines representing SCCs and epithelial cancers. shRNA-mediated depletion of HORMAD1 expression resulted in increased genomic instability, DNA damage, increased sensitivity to etoposide, and decreased expression of DNA damage response/repair genes. Conversely, overexpression of HORMAD1 exhibited protective effects leading to decreased DNA damage, enhanced survival and decreased sensitivity to etoposide. Furthermore, we identified a meiotic molecular pathway that regulates HORMAD1 expression by targeting the upstream meiosis transcription factor STRA8. Our results highlight a specific relationship between HORMAD1 and genomic instability in SCCs, suggesting that selectively inhibiting HORMAD1, possibly, through STRA8 signaling, may provide a new paradigm of treatment options for HORMAD1-expressing SCCs.
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spelling pubmed-102969092023-06-28 Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas Gantchev, Jennifer Messina-Pacheco, Julia Martínez Villarreal, Amelia Ramchatesingh, Brandon Lefrançois, Philippe Xie, Pingxing Amar, Laetitia Xu, Hong Hao Raveendra, Keerthenan Sikorski, Daniel Guerra Ordaz, Daniel Josue Gill, Raman Preet Kaur Lambert, Marine Litvinov, Ivan V. Cells Article Genomic instability is a prominent hallmark of cancer, however the mechanisms that drive and sustain this process remain elusive. Research demonstrates that numerous cancers with increased levels of genomic instability ectopically express meiosis-specific genes and undergo meiomitosis, the clash of mitotic and meiotic processes. These meiotic genes may represent novel therapeutic targets for the treatment of cancer. We studied the relationship between the expression of the meiosis protein HORMAD1 and genomic instability in squamous cell carcinomas (SCCs). First, we assessed markers of DNA damage and genomic instability following knockdown and overexpression of HORMAD1 in different cell lines representing SCCs and epithelial cancers. shRNA-mediated depletion of HORMAD1 expression resulted in increased genomic instability, DNA damage, increased sensitivity to etoposide, and decreased expression of DNA damage response/repair genes. Conversely, overexpression of HORMAD1 exhibited protective effects leading to decreased DNA damage, enhanced survival and decreased sensitivity to etoposide. Furthermore, we identified a meiotic molecular pathway that regulates HORMAD1 expression by targeting the upstream meiosis transcription factor STRA8. Our results highlight a specific relationship between HORMAD1 and genomic instability in SCCs, suggesting that selectively inhibiting HORMAD1, possibly, through STRA8 signaling, may provide a new paradigm of treatment options for HORMAD1-expressing SCCs. MDPI 2023-06-14 /pmc/articles/PMC10296909/ /pubmed/37371097 http://dx.doi.org/10.3390/cells12121627 Text en © 2023 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
Gantchev, Jennifer
Messina-Pacheco, Julia
Martínez Villarreal, Amelia
Ramchatesingh, Brandon
Lefrançois, Philippe
Xie, Pingxing
Amar, Laetitia
Xu, Hong Hao
Raveendra, Keerthenan
Sikorski, Daniel
Guerra Ordaz, Daniel Josue
Gill, Raman Preet Kaur
Lambert, Marine
Litvinov, Ivan V.
Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title_full Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title_fullStr Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title_full_unstemmed Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title_short Ectopically Expressed Meiosis-Specific Cancer Testis Antigen HORMAD1 Promotes Genomic Instability in Squamous Cell Carcinomas
title_sort ectopically expressed meiosis-specific cancer testis antigen hormad1 promotes genomic instability in squamous cell carcinomas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296909/
https://www.ncbi.nlm.nih.gov/pubmed/37371097
http://dx.doi.org/10.3390/cells12121627
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