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APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression

Apolipoprotein B mRNA-editing enzyme catalytic polypeptide-like (APOBEC) DNA cytosine deaminase 3B (A3B) is a DNA editing enzyme which induces genomic DNA mutations in multiple myeloma and in various other cancers. APOBEC family proteins are highly homologous so it is especially difficult to investi...

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Autores principales: Yamazaki, Hiroyuki, Shirakawa, Kotaro, Matsumoto, Tadahiko, Kazuma, Yasuhiro, Matsui, Hiroyuki, Horisawa, Yoshihito, Stanford, Emani, Sarca, Anamaria Daniela, Shirakawa, Ryutaro, Shindo, Keisuke, Takaori-Kondo, Akifumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6948746/
https://www.ncbi.nlm.nih.gov/pubmed/31914134
http://dx.doi.org/10.1371/journal.pone.0223463
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author Yamazaki, Hiroyuki
Shirakawa, Kotaro
Matsumoto, Tadahiko
Kazuma, Yasuhiro
Matsui, Hiroyuki
Horisawa, Yoshihito
Stanford, Emani
Sarca, Anamaria Daniela
Shirakawa, Ryutaro
Shindo, Keisuke
Takaori-Kondo, Akifumi
author_facet Yamazaki, Hiroyuki
Shirakawa, Kotaro
Matsumoto, Tadahiko
Kazuma, Yasuhiro
Matsui, Hiroyuki
Horisawa, Yoshihito
Stanford, Emani
Sarca, Anamaria Daniela
Shirakawa, Ryutaro
Shindo, Keisuke
Takaori-Kondo, Akifumi
author_sort Yamazaki, Hiroyuki
collection PubMed
description Apolipoprotein B mRNA-editing enzyme catalytic polypeptide-like (APOBEC) DNA cytosine deaminase 3B (A3B) is a DNA editing enzyme which induces genomic DNA mutations in multiple myeloma and in various other cancers. APOBEC family proteins are highly homologous so it is especially difficult to investigate the biology of specifically A3B in cancer cells. To easily and comprehensively investigate A3B function in myeloma cells, we used CRISPR/Cas9 to generate A3B reporter cells that contain 3×FLAG tag and IRES-EGFP sequences integrated at the end of the A3B gene. These reporter cells stably express 3xFLAG tagged A3B and the reporter EGFP and this expression is enhanced by known stimuli, such as PMA. Conversely, shRNA knockdown of A3B decreased EGFP fluorescence and 3xFLAG tagged A3B protein levels. We screened a series of anticancer treatments using these cell lines and identified that most conventional therapies, such as antimetabolites or radiation, exacerbated endogenous A3B expression, but recent molecular targeted therapeutics, including bortezomib, lenalidomide and elotuzumab, did not. Furthermore, chemical inhibition of ATM, ATR and DNA-PK suppressed EGFP expression upon treatment with antimetabolites. These results suggest that DNA damage triggers A3B expression through ATM, ATR and DNA-PK signaling.
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spelling pubmed-69487462020-01-17 APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression Yamazaki, Hiroyuki Shirakawa, Kotaro Matsumoto, Tadahiko Kazuma, Yasuhiro Matsui, Hiroyuki Horisawa, Yoshihito Stanford, Emani Sarca, Anamaria Daniela Shirakawa, Ryutaro Shindo, Keisuke Takaori-Kondo, Akifumi PLoS One Research Article Apolipoprotein B mRNA-editing enzyme catalytic polypeptide-like (APOBEC) DNA cytosine deaminase 3B (A3B) is a DNA editing enzyme which induces genomic DNA mutations in multiple myeloma and in various other cancers. APOBEC family proteins are highly homologous so it is especially difficult to investigate the biology of specifically A3B in cancer cells. To easily and comprehensively investigate A3B function in myeloma cells, we used CRISPR/Cas9 to generate A3B reporter cells that contain 3×FLAG tag and IRES-EGFP sequences integrated at the end of the A3B gene. These reporter cells stably express 3xFLAG tagged A3B and the reporter EGFP and this expression is enhanced by known stimuli, such as PMA. Conversely, shRNA knockdown of A3B decreased EGFP fluorescence and 3xFLAG tagged A3B protein levels. We screened a series of anticancer treatments using these cell lines and identified that most conventional therapies, such as antimetabolites or radiation, exacerbated endogenous A3B expression, but recent molecular targeted therapeutics, including bortezomib, lenalidomide and elotuzumab, did not. Furthermore, chemical inhibition of ATM, ATR and DNA-PK suppressed EGFP expression upon treatment with antimetabolites. These results suggest that DNA damage triggers A3B expression through ATM, ATR and DNA-PK signaling. Public Library of Science 2020-01-08 /pmc/articles/PMC6948746/ /pubmed/31914134 http://dx.doi.org/10.1371/journal.pone.0223463 Text en © 2020 Yamazaki et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yamazaki, Hiroyuki
Shirakawa, Kotaro
Matsumoto, Tadahiko
Kazuma, Yasuhiro
Matsui, Hiroyuki
Horisawa, Yoshihito
Stanford, Emani
Sarca, Anamaria Daniela
Shirakawa, Ryutaro
Shindo, Keisuke
Takaori-Kondo, Akifumi
APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title_full APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title_fullStr APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title_full_unstemmed APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title_short APOBEC3B reporter myeloma cell lines identify DNA damage response pathways leading to APOBEC3B expression
title_sort apobec3b reporter myeloma cell lines identify dna damage response pathways leading to apobec3b expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6948746/
https://www.ncbi.nlm.nih.gov/pubmed/31914134
http://dx.doi.org/10.1371/journal.pone.0223463
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