Cargando…

Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia

Somatic mutations of DNMT3A occur in about 20% of acute myeloid leukemia (AML) patients. They mostly consist in heterozygous missense mutations targeting a hotspot site at R882 codon, which exhibit a dominant negative effect and are associated with high myeloblast count, advanced age, and poor progn...

Descripción completa

Detalles Bibliográficos
Autores principales: Bruno, Samantha, Bochicchio, Maria Teresa, Franchini, Eugenia, Padella, Antonella, Marconi, Giovanni, Ghelli Luserna di Rorà, Andrea, Venturi, Claudia, Raffini, Maddalena, Prisinzano, Giovanna, Ferrari, Anna, Bandini, Lorenza, Robustelli, Valentina, Pazzaglia, Martina, Fontana, Maria Chiara, Sartor, Chiara, Abbenante, Maria Chiara, Papayannidis, Cristina, Soverini, Simona, Ottaviani, Emanuela, Simonetti, Giorgia, Martinelli, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6881567/
https://www.ncbi.nlm.nih.gov/pubmed/31827512
http://dx.doi.org/10.1155/2019/5985923
_version_ 1783473969177821184
author Bruno, Samantha
Bochicchio, Maria Teresa
Franchini, Eugenia
Padella, Antonella
Marconi, Giovanni
Ghelli Luserna di Rorà, Andrea
Venturi, Claudia
Raffini, Maddalena
Prisinzano, Giovanna
Ferrari, Anna
Bandini, Lorenza
Robustelli, Valentina
Pazzaglia, Martina
Fontana, Maria Chiara
Sartor, Chiara
Abbenante, Maria Chiara
Papayannidis, Cristina
Soverini, Simona
Ottaviani, Emanuela
Simonetti, Giorgia
Martinelli, Giovanni
author_facet Bruno, Samantha
Bochicchio, Maria Teresa
Franchini, Eugenia
Padella, Antonella
Marconi, Giovanni
Ghelli Luserna di Rorà, Andrea
Venturi, Claudia
Raffini, Maddalena
Prisinzano, Giovanna
Ferrari, Anna
Bandini, Lorenza
Robustelli, Valentina
Pazzaglia, Martina
Fontana, Maria Chiara
Sartor, Chiara
Abbenante, Maria Chiara
Papayannidis, Cristina
Soverini, Simona
Ottaviani, Emanuela
Simonetti, Giorgia
Martinelli, Giovanni
author_sort Bruno, Samantha
collection PubMed
description Somatic mutations of DNMT3A occur in about 20% of acute myeloid leukemia (AML) patients. They mostly consist in heterozygous missense mutations targeting a hotspot site at R882 codon, which exhibit a dominant negative effect and are associated with high myeloblast count, advanced age, and poor prognosis. Other types of mutations such as truncations, insertions, or single-nucleotide deletion also affect the DNMT3A gene, though with lower frequency. The present study aimed to characterize two DNMT3A gene mutations identified by next-generation sequencing (NGS), through analysis of protein stability and DNA methylation status at CpG islands. The first mutation was a single-nucleotide variant of DNMT3A at exon 20 causing a premature STOP codon (c.2385G > A; p.Trp795(∗); NM_022552.4). The DNMT3A mutation load increased from 4.5% to 38.2% during guadecitabine treatment, with a dominant negative effect on CpG methylation and on protein expression. The second mutation was a novel insertion of 35 nucleotides in exon 22 of DNMT3A (NM_022552.4) that introduced a STOP codon too, after the amino acid Glu863 caused by a frameshift insertion (c.2586_2587insTCATGAATGAGAAAGAGGACATCTTATGGTGCACT; p. Thr862_Glu863fsins). The mutation, which was associated with reduced DNMT3A expression and CpG methylation, persisted at relapse with minor changes in the methylation profile and at protein level. Our data highlight the need to better understand the consequences of DNMT3A mutations other than R882 substitutions in the leukemogenic process in order to tailor patient treatments, thus avoiding therapeutic resistance and disease relapse.
format Online
Article
Text
id pubmed-6881567
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-68815672019-12-11 Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia Bruno, Samantha Bochicchio, Maria Teresa Franchini, Eugenia Padella, Antonella Marconi, Giovanni Ghelli Luserna di Rorà, Andrea Venturi, Claudia Raffini, Maddalena Prisinzano, Giovanna Ferrari, Anna Bandini, Lorenza Robustelli, Valentina Pazzaglia, Martina Fontana, Maria Chiara Sartor, Chiara Abbenante, Maria Chiara Papayannidis, Cristina Soverini, Simona Ottaviani, Emanuela Simonetti, Giorgia Martinelli, Giovanni J Oncol Research Article Somatic mutations of DNMT3A occur in about 20% of acute myeloid leukemia (AML) patients. They mostly consist in heterozygous missense mutations targeting a hotspot site at R882 codon, which exhibit a dominant negative effect and are associated with high myeloblast count, advanced age, and poor prognosis. Other types of mutations such as truncations, insertions, or single-nucleotide deletion also affect the DNMT3A gene, though with lower frequency. The present study aimed to characterize two DNMT3A gene mutations identified by next-generation sequencing (NGS), through analysis of protein stability and DNA methylation status at CpG islands. The first mutation was a single-nucleotide variant of DNMT3A at exon 20 causing a premature STOP codon (c.2385G > A; p.Trp795(∗); NM_022552.4). The DNMT3A mutation load increased from 4.5% to 38.2% during guadecitabine treatment, with a dominant negative effect on CpG methylation and on protein expression. The second mutation was a novel insertion of 35 nucleotides in exon 22 of DNMT3A (NM_022552.4) that introduced a STOP codon too, after the amino acid Glu863 caused by a frameshift insertion (c.2586_2587insTCATGAATGAGAAAGAGGACATCTTATGGTGCACT; p. Thr862_Glu863fsins). The mutation, which was associated with reduced DNMT3A expression and CpG methylation, persisted at relapse with minor changes in the methylation profile and at protein level. Our data highlight the need to better understand the consequences of DNMT3A mutations other than R882 substitutions in the leukemogenic process in order to tailor patient treatments, thus avoiding therapeutic resistance and disease relapse. Hindawi 2019-10-30 /pmc/articles/PMC6881567/ /pubmed/31827512 http://dx.doi.org/10.1155/2019/5985923 Text en Copyright © 2019 Samantha Bruno et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bruno, Samantha
Bochicchio, Maria Teresa
Franchini, Eugenia
Padella, Antonella
Marconi, Giovanni
Ghelli Luserna di Rorà, Andrea
Venturi, Claudia
Raffini, Maddalena
Prisinzano, Giovanna
Ferrari, Anna
Bandini, Lorenza
Robustelli, Valentina
Pazzaglia, Martina
Fontana, Maria Chiara
Sartor, Chiara
Abbenante, Maria Chiara
Papayannidis, Cristina
Soverini, Simona
Ottaviani, Emanuela
Simonetti, Giorgia
Martinelli, Giovanni
Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title_full Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title_fullStr Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title_full_unstemmed Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title_short Identification of Two DNMT3A Mutations Compromising Protein Stability and Methylation Capacity in Acute Myeloid Leukemia
title_sort identification of two dnmt3a mutations compromising protein stability and methylation capacity in acute myeloid leukemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6881567/
https://www.ncbi.nlm.nih.gov/pubmed/31827512
http://dx.doi.org/10.1155/2019/5985923
work_keys_str_mv AT brunosamantha identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT bochicchiomariateresa identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT franchinieugenia identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT padellaantonella identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT marconigiovanni identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT ghellilusernadiroraandrea identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT venturiclaudia identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT raffinimaddalena identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT prisinzanogiovanna identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT ferrarianna identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT bandinilorenza identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT robustellivalentina identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT pazzagliamartina identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT fontanamariachiara identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT sartorchiara identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT abbenantemariachiara identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT papayannidiscristina identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT soverinisimona identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT ottavianiemanuela identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT simonettigiorgia identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia
AT martinelligiovanni identificationoftwodnmt3amutationscompromisingproteinstabilityandmethylationcapacityinacutemyeloidleukemia