Cargando…

MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)

The type I Melanoma Antigen Gene (MAGE) A3 is a functional target associated with survival and proliferation in multiple myeloma (MM). To investigate the mechanisms of these oncogenic functions, we performed gene expression profiling (GEP) of p53 wild-type human myeloma cell lines (HMCL) after MAGE-...

Descripción completa

Detalles Bibliográficos
Autores principales: Mei, Anna Huo-Chang, Tung, Kaity, Han, Jessie, Perumal, Deepak, Laganà, Alessandro, Keats, Jonathan, Auclair, Daniel, Chari, Ajai, Jagannath, Sundar, Parekh, Samir, Cho, Hearn Jay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7041939/
https://www.ncbi.nlm.nih.gov/pubmed/32133047
http://dx.doi.org/10.18632/oncotarget.27488
_version_ 1783501227917574144
author Mei, Anna Huo-Chang
Tung, Kaity
Han, Jessie
Perumal, Deepak
Laganà, Alessandro
Keats, Jonathan
Auclair, Daniel
Chari, Ajai
Jagannath, Sundar
Parekh, Samir
Cho, Hearn Jay
author_facet Mei, Anna Huo-Chang
Tung, Kaity
Han, Jessie
Perumal, Deepak
Laganà, Alessandro
Keats, Jonathan
Auclair, Daniel
Chari, Ajai
Jagannath, Sundar
Parekh, Samir
Cho, Hearn Jay
author_sort Mei, Anna Huo-Chang
collection PubMed
description The type I Melanoma Antigen Gene (MAGE) A3 is a functional target associated with survival and proliferation in multiple myeloma (MM). To investigate the mechanisms of these oncogenic functions, we performed gene expression profiling (GEP) of p53 wild-type human myeloma cell lines (HMCL) after MAGE-A knockdown, which identified a set of 201 differentially expressed genes (DEG) associated with apoptosis, DNA repair, and cell cycle regulation. MAGE knockdown increased protein levels of pro-apoptotic BIM and of the endogenous cyclin-dependent kinase (CDK) inhibitor p21(Cip1). Depletion of MAGE-A in HMCL increased sensitivity to the alkylating agent melphalan but not to proteasome inhibition. High MAGEA3 was associated with the MYC and Cell Cycling clusters defined by a network model of GEP data from the CoMMpass database of newly diagnosed, untreated MM patients. Comparative analysis of CoMMpass subjects based on high or low MAGEA3 expression revealed a set of 6748 DEG that also had significant functional associations with cell cycle and DNA replication pathways, similar to that observed in HMCL. High MAGEA3 expression correlated with shorter overall survival after melphalan chemotherapy and autologous stem cell transplantation (ASCT). These results demonstrate that MAGE-A3 regulates Bim and p21(Cip1) transcription and protein expression, inhibits apoptosis, and promotes proliferation.
format Online
Article
Text
id pubmed-7041939
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-70419392020-03-04 MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1) Mei, Anna Huo-Chang Tung, Kaity Han, Jessie Perumal, Deepak Laganà, Alessandro Keats, Jonathan Auclair, Daniel Chari, Ajai Jagannath, Sundar Parekh, Samir Cho, Hearn Jay Oncotarget Research Paper The type I Melanoma Antigen Gene (MAGE) A3 is a functional target associated with survival and proliferation in multiple myeloma (MM). To investigate the mechanisms of these oncogenic functions, we performed gene expression profiling (GEP) of p53 wild-type human myeloma cell lines (HMCL) after MAGE-A knockdown, which identified a set of 201 differentially expressed genes (DEG) associated with apoptosis, DNA repair, and cell cycle regulation. MAGE knockdown increased protein levels of pro-apoptotic BIM and of the endogenous cyclin-dependent kinase (CDK) inhibitor p21(Cip1). Depletion of MAGE-A in HMCL increased sensitivity to the alkylating agent melphalan but not to proteasome inhibition. High MAGEA3 was associated with the MYC and Cell Cycling clusters defined by a network model of GEP data from the CoMMpass database of newly diagnosed, untreated MM patients. Comparative analysis of CoMMpass subjects based on high or low MAGEA3 expression revealed a set of 6748 DEG that also had significant functional associations with cell cycle and DNA replication pathways, similar to that observed in HMCL. High MAGEA3 expression correlated with shorter overall survival after melphalan chemotherapy and autologous stem cell transplantation (ASCT). These results demonstrate that MAGE-A3 regulates Bim and p21(Cip1) transcription and protein expression, inhibits apoptosis, and promotes proliferation. Impact Journals LLC 2020-02-18 /pmc/articles/PMC7041939/ /pubmed/32133047 http://dx.doi.org/10.18632/oncotarget.27488 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Mei et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Mei, Anna Huo-Chang
Tung, Kaity
Han, Jessie
Perumal, Deepak
Laganà, Alessandro
Keats, Jonathan
Auclair, Daniel
Chari, Ajai
Jagannath, Sundar
Parekh, Samir
Cho, Hearn Jay
MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title_full MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title_fullStr MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title_full_unstemmed MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title_short MAGE-A inhibit apoptosis and promote proliferation in multiple myeloma through regulation of BIM and p21(Cip1)
title_sort mage-a inhibit apoptosis and promote proliferation in multiple myeloma through regulation of bim and p21(cip1)
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7041939/
https://www.ncbi.nlm.nih.gov/pubmed/32133047
http://dx.doi.org/10.18632/oncotarget.27488
work_keys_str_mv AT meiannahuochang mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT tungkaity mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT hanjessie mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT perumaldeepak mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT laganaalessandro mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT keatsjonathan mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT auclairdaniel mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT chariajai mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT jagannathsundar mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT parekhsamir mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1
AT chohearnjay mageainhibitapoptosisandpromoteproliferationinmultiplemyelomathroughregulationofbimandp21cip1