Coregulatory effects of multiple histone modifications in key ferroptosis-related genes for lung adenocarcinoma.

IF 3 4区 医学 Q2 GENETICS & HEREDITY
Epigenomics Pub Date : 2024-03-21 DOI:10.2217/epi-2023-0403
Ye-Chen Qi, Hui Bai, Si-Le Hu, Shu-Juan Li, Qian-Zhong Li
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引用次数: 0

Abstract

Aim: The present study was designed to investigate the coregulatory effects of multiple histone modifications (HMs) on gene expression in lung adenocarcinoma (LUAD). Materials & methods: Ten histones for LUAD were analyzed using ChIP-seq and RNA-seq data. An innovative computational method is proposed to quantify the coregulatory effects of multiple HMs on gene expression to identify strong coregulatory genes and regions. This method was applied to explore the coregulatory mechanisms of key ferroptosis-related genes in LUAD. Results: Nine strong coregulatory regions were identified for six ferroptosis-related genes with diverse coregulatory patterns (CA9, PGD, CDKN2A, PML, OTUB1 and NFE2L2). Conclusion: This quantitative method could be used to identify important HM coregulatory genes and regions that may be epigenetic regulatory targets in cancers.

多种组蛋白修饰对肺腺癌关键铁变态相关基因的核心调节作用
目的:本研究旨在探讨多种组蛋白修饰(HMs)对肺腺癌(LUAD)基因表达的核心调控作用。材料与方法:利用 ChIP-seq 和 RNA-seq 数据分析了 LUAD 的十种组蛋白。提出了一种创新的计算方法来量化多种组蛋白对基因表达的核心调控作用,以确定强核心调控基因和区域。该方法被应用于探索 LUAD 中关键铁突变相关基因的核心调控机制。结果结果:为 6 个铁变态相关基因(CA9、PGD、CDKN2A、PML、OTUB1 和 NFE2L2)确定了 9 个强核心调控区域,其核心调控模式各不相同。结论这种定量方法可用于鉴定可能成为癌症表观遗传调控靶点的重要 HM 核心调控基因和区域。
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来源期刊
Epigenomics
Epigenomics GENETICS & HEREDITY-
CiteScore
5.80
自引率
2.60%
发文量
95
审稿时长
>12 weeks
期刊介绍: Epigenomics provides the forum to address the rapidly progressing research developments in this ever-expanding field; to report on the major challenges ahead and critical advances that are propelling the science forward. The journal delivers this information in concise, at-a-glance article formats – invaluable to a time constrained community. Substantial developments in our current knowledge and understanding of genomics and epigenetics are constantly being made, yet this field is still in its infancy. Epigenomics provides a critical overview of the latest and most significant advances as they unfold and explores their potential application in the clinical setting.
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