Cargando…

Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia

Fanconi anemia (FA) patients have an exacerbated risk of head and neck squamous cell carcinoma (HNSCC). Treatment is challenging as FA patients display enhanced toxicity to standard treatments, including radio/chemotherapy. Therefore, better therapies as well as new disease models are urgently neede...

Descripción completa

Detalles Bibliográficos
Autores principales: Errazquin, Ricardo, Sieiro, Esther, Moreno, Pilar, Ramirez, María José, Lorz, Corina, Peral, Jorge, Ortiz, Jessica, Casado, José Antonio, Roman-Rodriguez, Francisco J., Hanenberg, Helmut, Río, Paula, Surralles, Jordi, Segrelles, Carmen, Garcia-Escudero, Ramon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069753/
https://www.ncbi.nlm.nih.gov/pubmed/33918752
http://dx.doi.org/10.3390/genes12040548
_version_ 1783683311006121984
author Errazquin, Ricardo
Sieiro, Esther
Moreno, Pilar
Ramirez, María José
Lorz, Corina
Peral, Jorge
Ortiz, Jessica
Casado, José Antonio
Roman-Rodriguez, Francisco J.
Hanenberg, Helmut
Río, Paula
Surralles, Jordi
Segrelles, Carmen
Garcia-Escudero, Ramon
author_facet Errazquin, Ricardo
Sieiro, Esther
Moreno, Pilar
Ramirez, María José
Lorz, Corina
Peral, Jorge
Ortiz, Jessica
Casado, José Antonio
Roman-Rodriguez, Francisco J.
Hanenberg, Helmut
Río, Paula
Surralles, Jordi
Segrelles, Carmen
Garcia-Escudero, Ramon
author_sort Errazquin, Ricardo
collection PubMed
description Fanconi anemia (FA) patients have an exacerbated risk of head and neck squamous cell carcinoma (HNSCC). Treatment is challenging as FA patients display enhanced toxicity to standard treatments, including radio/chemotherapy. Therefore, better therapies as well as new disease models are urgently needed. We have used CRISPR/Cas9 editing tools in order to interrupt the human FANCA gene by the generation of insertions/deletions (indels) in exon 4 in two cancer cell lines from sporadic HNSCC having no mutation in FA-genes: CAL27 and CAL33 cells. Our approach allowed efficient editing, subsequent purification of single-cell clones, and Sanger sequencing validation at the edited locus. Clones having frameshift indels in homozygosis did not express FANCA protein and were selected for further analysis. When compared with parental CAL27 and CAL33, FANCA-mutant cell clones displayed a FA-phenotype as they (i) are highly sensitive to DNA interstrand crosslink (ICL) agents such as mitomycin C (MMC) or cisplatin, (ii) do not monoubiquitinate FANCD2 upon MMC treatment and therefore (iii) do not form FANCD2 nuclear foci, and (iv) they display increased chromosome fragility and G2 arrest after diepoxybutane (DEB) treatment. These FANCA-mutant clones display similar growth rates as their parental cells. Interestingly, mutant cells acquire phenotypes associated with more aggressive disease, such as increased migration in wound healing assays. Therefore, CAL27 and CAL33 cells with FANCA mutations are phenocopies of FA-HNSCC cells.
format Online
Article
Text
id pubmed-8069753
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80697532021-04-26 Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia Errazquin, Ricardo Sieiro, Esther Moreno, Pilar Ramirez, María José Lorz, Corina Peral, Jorge Ortiz, Jessica Casado, José Antonio Roman-Rodriguez, Francisco J. Hanenberg, Helmut Río, Paula Surralles, Jordi Segrelles, Carmen Garcia-Escudero, Ramon Genes (Basel) Article Fanconi anemia (FA) patients have an exacerbated risk of head and neck squamous cell carcinoma (HNSCC). Treatment is challenging as FA patients display enhanced toxicity to standard treatments, including radio/chemotherapy. Therefore, better therapies as well as new disease models are urgently needed. We have used CRISPR/Cas9 editing tools in order to interrupt the human FANCA gene by the generation of insertions/deletions (indels) in exon 4 in two cancer cell lines from sporadic HNSCC having no mutation in FA-genes: CAL27 and CAL33 cells. Our approach allowed efficient editing, subsequent purification of single-cell clones, and Sanger sequencing validation at the edited locus. Clones having frameshift indels in homozygosis did not express FANCA protein and were selected for further analysis. When compared with parental CAL27 and CAL33, FANCA-mutant cell clones displayed a FA-phenotype as they (i) are highly sensitive to DNA interstrand crosslink (ICL) agents such as mitomycin C (MMC) or cisplatin, (ii) do not monoubiquitinate FANCD2 upon MMC treatment and therefore (iii) do not form FANCD2 nuclear foci, and (iv) they display increased chromosome fragility and G2 arrest after diepoxybutane (DEB) treatment. These FANCA-mutant clones display similar growth rates as their parental cells. Interestingly, mutant cells acquire phenotypes associated with more aggressive disease, such as increased migration in wound healing assays. Therefore, CAL27 and CAL33 cells with FANCA mutations are phenocopies of FA-HNSCC cells. MDPI 2021-04-09 /pmc/articles/PMC8069753/ /pubmed/33918752 http://dx.doi.org/10.3390/genes12040548 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
Errazquin, Ricardo
Sieiro, Esther
Moreno, Pilar
Ramirez, María José
Lorz, Corina
Peral, Jorge
Ortiz, Jessica
Casado, José Antonio
Roman-Rodriguez, Francisco J.
Hanenberg, Helmut
Río, Paula
Surralles, Jordi
Segrelles, Carmen
Garcia-Escudero, Ramon
Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title_full Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title_fullStr Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title_full_unstemmed Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title_short Generating New FANCA-Deficient HNSCC Cell Lines by Genomic Editing Recapitulates the Cellular Phenotypes of Fanconi Anemia
title_sort generating new fanca-deficient hnscc cell lines by genomic editing recapitulates the cellular phenotypes of fanconi anemia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069753/
https://www.ncbi.nlm.nih.gov/pubmed/33918752
http://dx.doi.org/10.3390/genes12040548
work_keys_str_mv AT errazquinricardo generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT sieiroesther generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT morenopilar generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT ramirezmariajose generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT lorzcorina generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT peraljorge generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT ortizjessica generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT casadojoseantonio generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT romanrodriguezfranciscoj generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT hanenberghelmut generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT riopaula generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT surrallesjordi generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT segrellescarmen generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia
AT garciaescuderoramon generatingnewfancadeficienthnscccelllinesbygenomiceditingrecapitulatesthecellularphenotypesoffanconianemia