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Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma

Uveal melanoma (UM) is the most frequent and life-threatening ocular malignancy in adults. Aberrant histone methylation contributes to the abnormal transcriptome during oncogenesis. However, a comprehensive understanding of histone methylation patterns and their therapeutic potential in UM remains e...

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Autores principales: Gu, Xiang, Hua, Yu, Yu, Jie, Yang, Ludi, Ge, Shengfang, Jia, Renbing, Chai, Peiwei, Zhuang, Ai, Fan, Xianqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Xi'an Jiaotong University 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937798/
https://www.ncbi.nlm.nih.gov/pubmed/36820078
http://dx.doi.org/10.1016/j.jpha.2022.11.008
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author Gu, Xiang
Hua, Yu
Yu, Jie
Yang, Ludi
Ge, Shengfang
Jia, Renbing
Chai, Peiwei
Zhuang, Ai
Fan, Xianqun
author_facet Gu, Xiang
Hua, Yu
Yu, Jie
Yang, Ludi
Ge, Shengfang
Jia, Renbing
Chai, Peiwei
Zhuang, Ai
Fan, Xianqun
author_sort Gu, Xiang
collection PubMed
description Uveal melanoma (UM) is the most frequent and life-threatening ocular malignancy in adults. Aberrant histone methylation contributes to the abnormal transcriptome during oncogenesis. However, a comprehensive understanding of histone methylation patterns and their therapeutic potential in UM remains enigmatic. Herein, using a systematic epi-drug screening and a high-throughput transcriptome profiling of histone methylation modifiers, we observed that disruptor of telomeric silencing-1-like (DOT1L), a methyltransferase of histone H3 lysine 79 (H3K79), was activated in UM, especially in the high-risk group. Concordantly, a systematic epi-drug library screening revealed that DOT1L inhibitors exhibited salient tumor-selective inhibitory effects on UM cells, both in vitro and in vivo. Combining Cleavage Under Targets and Tagmentation (CUT&Tag), RNA sequencing (RNA-seq), and bioinformatics analysis, we identified that DOT1L facilitated H3K79 methylation of nicotinate phosphoribosyltransferase (NAPRT) and epigenetically activated its expression. Importantly, NAPRT served as an oncogenic accelerator by enhancing nicotinamide adenine dinucleotide (NAD(+)) synthesis. Therapeutically, DOT1L inhibition epigenetically silenced NAPRT expression through the diminishment of dimethylation of H3K79 (H3K79me2) in the NAPRT promoter, thereby inhibiting the malignant behaviors of UM. Conclusively, our findings delineated an integrated picture of the histone methylation landscape in UM and unveiled a novel DOT1L/NAPRT oncogenic mechanism that bridges transcriptional addiction and metabolic reprogramming.
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spelling pubmed-99377982023-02-19 Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma Gu, Xiang Hua, Yu Yu, Jie Yang, Ludi Ge, Shengfang Jia, Renbing Chai, Peiwei Zhuang, Ai Fan, Xianqun J Pharm Anal Original Article Uveal melanoma (UM) is the most frequent and life-threatening ocular malignancy in adults. Aberrant histone methylation contributes to the abnormal transcriptome during oncogenesis. However, a comprehensive understanding of histone methylation patterns and their therapeutic potential in UM remains enigmatic. Herein, using a systematic epi-drug screening and a high-throughput transcriptome profiling of histone methylation modifiers, we observed that disruptor of telomeric silencing-1-like (DOT1L), a methyltransferase of histone H3 lysine 79 (H3K79), was activated in UM, especially in the high-risk group. Concordantly, a systematic epi-drug library screening revealed that DOT1L inhibitors exhibited salient tumor-selective inhibitory effects on UM cells, both in vitro and in vivo. Combining Cleavage Under Targets and Tagmentation (CUT&Tag), RNA sequencing (RNA-seq), and bioinformatics analysis, we identified that DOT1L facilitated H3K79 methylation of nicotinate phosphoribosyltransferase (NAPRT) and epigenetically activated its expression. Importantly, NAPRT served as an oncogenic accelerator by enhancing nicotinamide adenine dinucleotide (NAD(+)) synthesis. Therapeutically, DOT1L inhibition epigenetically silenced NAPRT expression through the diminishment of dimethylation of H3K79 (H3K79me2) in the NAPRT promoter, thereby inhibiting the malignant behaviors of UM. Conclusively, our findings delineated an integrated picture of the histone methylation landscape in UM and unveiled a novel DOT1L/NAPRT oncogenic mechanism that bridges transcriptional addiction and metabolic reprogramming. Xi'an Jiaotong University 2023-01 2022-11-28 /pmc/articles/PMC9937798/ /pubmed/36820078 http://dx.doi.org/10.1016/j.jpha.2022.11.008 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Gu, Xiang
Hua, Yu
Yu, Jie
Yang, Ludi
Ge, Shengfang
Jia, Renbing
Chai, Peiwei
Zhuang, Ai
Fan, Xianqun
Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title_full Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title_fullStr Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title_full_unstemmed Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title_short Epigenetic drug library screening reveals targeting DOT1L abrogates NAD(+) synthesis by reprogramming H3K79 methylation in uveal melanoma
title_sort epigenetic drug library screening reveals targeting dot1l abrogates nad(+) synthesis by reprogramming h3k79 methylation in uveal melanoma
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937798/
https://www.ncbi.nlm.nih.gov/pubmed/36820078
http://dx.doi.org/10.1016/j.jpha.2022.11.008
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