Cargando…
The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A
Methylmercury (MeHg) exposure has been related to amyotrophic lateral sclerosis (ALS) pathogenesis and molecular mechanisms of its neurotoxicity has been associated to an overexpression of the Restrictive Element 1 Silencing Transcription factor (REST). Herein, we evaluated the possibility that MeHg...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8662822/ https://www.ncbi.nlm.nih.gov/pubmed/34899171 http://dx.doi.org/10.3389/fnins.2021.771580 |
_version_ | 1784613517018529792 |
---|---|
author | Guida, Natascia Sanguigno, Luca Mascolo, Luigi Calabrese, Lucrezia Serani, Angelo Molinaro, Pasquale Lau, C. Geoffrey Annunziato, Lucio Formisano, Luigi |
author_facet | Guida, Natascia Sanguigno, Luca Mascolo, Luigi Calabrese, Lucrezia Serani, Angelo Molinaro, Pasquale Lau, C. Geoffrey Annunziato, Lucio Formisano, Luigi |
author_sort | Guida, Natascia |
collection | PubMed |
description | Methylmercury (MeHg) exposure has been related to amyotrophic lateral sclerosis (ALS) pathogenesis and molecular mechanisms of its neurotoxicity has been associated to an overexpression of the Restrictive Element 1 Silencing Transcription factor (REST). Herein, we evaluated the possibility that MeHg could accelerate neuronal death of the motor neuron-like NSC34 cells transiently overexpressing the human Cu(2+)/Zn(2+)superoxide dismutase 1 (SOD1) gene mutated at glycine 93 (SOD1-G93A). Indeed, SOD1-G93A cells exposed to 100 nM MeHg for 24 h showed a reduction in cell viability, as compared to cells transfected with empty vector or with unmutated SOD1 construct. Interestingly, cell survival reduction in SOD1-G93A cells was associated with an increase of REST mRNA and protein levels. Furthermore, MeHg increased the expression of the transcriptional factor Sp1 and promoted its binding to REST gene promoter sequence. Notably, Sp1 knockdown reverted MeHg-induced REST increase. Co-immunoprecipitation experiments demonstrated that Sp1 physically interacted with the epigenetic writer Lysine-Methyltransferase-2A (KMT2A). Moreover, knocking-down of KMT2A reduced MeHg-induced REST mRNA and protein increase in SOD1-G93A cells. Finally, we found that MeHg-induced REST up-regulation triggered necropoptotic cell death, monitored by RIPK1 increased protein expression. Interestingly, REST knockdown or treatment with the necroptosis inhibitor Necrostatin-1 (Nec) decelerated MeH-induced cell death in SOD1-G93A cells. Collectively, this study demonstrated that MeHg hastens necroptotic cell death in SOD1-G93A cells via Sp1/KMT2A complex, that by epigenetic mechanisms increases REST gene expression. |
format | Online Article Text |
id | pubmed-8662822 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-86628222021-12-11 The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A Guida, Natascia Sanguigno, Luca Mascolo, Luigi Calabrese, Lucrezia Serani, Angelo Molinaro, Pasquale Lau, C. Geoffrey Annunziato, Lucio Formisano, Luigi Front Neurosci Neuroscience Methylmercury (MeHg) exposure has been related to amyotrophic lateral sclerosis (ALS) pathogenesis and molecular mechanisms of its neurotoxicity has been associated to an overexpression of the Restrictive Element 1 Silencing Transcription factor (REST). Herein, we evaluated the possibility that MeHg could accelerate neuronal death of the motor neuron-like NSC34 cells transiently overexpressing the human Cu(2+)/Zn(2+)superoxide dismutase 1 (SOD1) gene mutated at glycine 93 (SOD1-G93A). Indeed, SOD1-G93A cells exposed to 100 nM MeHg for 24 h showed a reduction in cell viability, as compared to cells transfected with empty vector or with unmutated SOD1 construct. Interestingly, cell survival reduction in SOD1-G93A cells was associated with an increase of REST mRNA and protein levels. Furthermore, MeHg increased the expression of the transcriptional factor Sp1 and promoted its binding to REST gene promoter sequence. Notably, Sp1 knockdown reverted MeHg-induced REST increase. Co-immunoprecipitation experiments demonstrated that Sp1 physically interacted with the epigenetic writer Lysine-Methyltransferase-2A (KMT2A). Moreover, knocking-down of KMT2A reduced MeHg-induced REST mRNA and protein increase in SOD1-G93A cells. Finally, we found that MeHg-induced REST up-regulation triggered necropoptotic cell death, monitored by RIPK1 increased protein expression. Interestingly, REST knockdown or treatment with the necroptosis inhibitor Necrostatin-1 (Nec) decelerated MeH-induced cell death in SOD1-G93A cells. Collectively, this study demonstrated that MeHg hastens necroptotic cell death in SOD1-G93A cells via Sp1/KMT2A complex, that by epigenetic mechanisms increases REST gene expression. Frontiers Media S.A. 2021-11-26 /pmc/articles/PMC8662822/ /pubmed/34899171 http://dx.doi.org/10.3389/fnins.2021.771580 Text en Copyright © 2021 Guida, Sanguigno, Mascolo, Calabrese, Serani, Molinaro, Lau, Annunziato and Formisano. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Neuroscience Guida, Natascia Sanguigno, Luca Mascolo, Luigi Calabrese, Lucrezia Serani, Angelo Molinaro, Pasquale Lau, C. Geoffrey Annunziato, Lucio Formisano, Luigi The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title | The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title_full | The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title_fullStr | The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title_full_unstemmed | The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title_short | The Transcriptional Complex Sp1/KMT2A by Up-Regulating Restrictive Element 1 Silencing Transcription Factor Accelerates Methylmercury-Induced Cell Death in Motor Neuron-Like NSC34 Cells Overexpressing SOD1-G93A |
title_sort | transcriptional complex sp1/kmt2a by up-regulating restrictive element 1 silencing transcription factor accelerates methylmercury-induced cell death in motor neuron-like nsc34 cells overexpressing sod1-g93a |
topic | Neuroscience |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8662822/ https://www.ncbi.nlm.nih.gov/pubmed/34899171 http://dx.doi.org/10.3389/fnins.2021.771580 |
work_keys_str_mv | AT guidanatascia thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT sanguignoluca thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT mascololuigi thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT calabreselucrezia thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT seraniangelo thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT molinaropasquale thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT laucgeoffrey thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT annunziatolucio thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT formisanoluigi thetranscriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT guidanatascia transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT sanguignoluca transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT mascololuigi transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT calabreselucrezia transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT seraniangelo transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT molinaropasquale transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT laucgeoffrey transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT annunziatolucio transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a AT formisanoluigi transcriptionalcomplexsp1kmt2abyupregulatingrestrictiveelement1silencingtranscriptionfactoracceleratesmethylmercuryinducedcelldeathinmotorneuronlikensc34cellsoverexpressingsod1g93a |