Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma
Abstract CREB-binding protein (CBP) is an acetyltransferase known to play multiple roles in the transcriptions of genes involving oxidative metabolism, cell cycle, DNA damage checkpoints, and cell death. In this study, CBP was found to positively regulate the expression of Ku70, and both CBP and Ku7...
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2021-02-01
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Series: | Cell Death Discovery |
Online Access: | https://doi.org/10.1038/s41420-021-00417-z |
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doaj-43ab395dabed4a81b0f4c80d8674d4f32021-03-11T12:48:56ZengNature Publishing GroupCell Death Discovery2058-77162021-02-017111510.1038/s41420-021-00417-zTranscriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanomaLiang Ding0Yalei Wen1Xin Zhang2Fang Zhao3Kenao Lv4Jian-hong Shi5Shigang Shen6Xuefeng Pan7School of Medicine, Hebei UniversitySchool of Medicine, Hebei UniversitySchool of Medicine, Hebei UniversitySchool of Medicine, Hebei UniversitySchool of Life Science, Beijing Institute of TechnologyCentral Laboratory, Affiliated Hospital of Hebei UniversitySchool of Chemistry and environmental Science, Hebei UniversitySchool of Medicine, Hebei UniversityAbstract CREB-binding protein (CBP) is an acetyltransferase known to play multiple roles in the transcriptions of genes involving oxidative metabolism, cell cycle, DNA damage checkpoints, and cell death. In this study, CBP was found to positively regulate the expression of Ku70, and both CBP and Ku70 were found to negatively regulate the expression of NOX2, therefore, mitigating the intracellular ROS in human melanoma. Knocking down CBP or Ku70 induced necrotic and paraptotic cell death as indicated by high-level intracellular ROS, cytoplasmic vacuolization, and cell cycle arrest in the S phase. In addition, chromosomal condensations were also observed in the cells proceeding necrotic and paraptotic cell death, which was found to be related to the BAX-associated intrinsic pathway of apoptotic cell death, when Ku70 was decreased either by CBP depletion or by Ku70 depletion directly. Our results, therefore, supported the idea that CBP, Ku70, BAX, and NOX2 have formed a transcriptional network in the prevention of cell death of necrosis, paraptosis, and apoptosis in human melanoma.https://doi.org/10.1038/s41420-021-00417-z |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Liang Ding Yalei Wen Xin Zhang Fang Zhao Kenao Lv Jian-hong Shi Shigang Shen Xuefeng Pan |
spellingShingle |
Liang Ding Yalei Wen Xin Zhang Fang Zhao Kenao Lv Jian-hong Shi Shigang Shen Xuefeng Pan Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma Cell Death Discovery |
author_facet |
Liang Ding Yalei Wen Xin Zhang Fang Zhao Kenao Lv Jian-hong Shi Shigang Shen Xuefeng Pan |
author_sort |
Liang Ding |
title |
Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
title_short |
Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
title_full |
Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
title_fullStr |
Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
title_full_unstemmed |
Transcriptional network constituted of CBP, Ku70, NOX2, and BAX prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
title_sort |
transcriptional network constituted of cbp, ku70, nox2, and bax prevents the cell death of necrosis, paraptosis, and apoptosis in human melanoma |
publisher |
Nature Publishing Group |
series |
Cell Death Discovery |
issn |
2058-7716 |
publishDate |
2021-02-01 |
description |
Abstract CREB-binding protein (CBP) is an acetyltransferase known to play multiple roles in the transcriptions of genes involving oxidative metabolism, cell cycle, DNA damage checkpoints, and cell death. In this study, CBP was found to positively regulate the expression of Ku70, and both CBP and Ku70 were found to negatively regulate the expression of NOX2, therefore, mitigating the intracellular ROS in human melanoma. Knocking down CBP or Ku70 induced necrotic and paraptotic cell death as indicated by high-level intracellular ROS, cytoplasmic vacuolization, and cell cycle arrest in the S phase. In addition, chromosomal condensations were also observed in the cells proceeding necrotic and paraptotic cell death, which was found to be related to the BAX-associated intrinsic pathway of apoptotic cell death, when Ku70 was decreased either by CBP depletion or by Ku70 depletion directly. Our results, therefore, supported the idea that CBP, Ku70, BAX, and NOX2 have formed a transcriptional network in the prevention of cell death of necrosis, paraptosis, and apoptosis in human melanoma. |
url |
https://doi.org/10.1038/s41420-021-00417-z |
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