弥漫性内禀脑桥胶质瘤的表观遗传和代谢变化。

Jiyoon Park, Chan Chung
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引用次数: 1

摘要

弥漫性中线胶质瘤(DMG),迄今为止被称为弥漫性内在脑桥胶质瘤(DIPG),是一种罕见的侵袭性脑癌,主要影响儿童。虽然DMG/DIPG的确切病因尚不清楚,但很大一部分DMG/DIPG肿瘤含有编码组蛋白H3蛋白的基因突变,特别是H3K27M突变。这种突变降低了H3K27me3的水平,H3K27me3是一种组蛋白修饰,在通过表观遗传调节基因表达中起着至关重要的作用。该突变还改变了多梳抑制复合体2 (PRC2)的功能,从而阻止了与癌症发展相关的基因的抑制。组蛋白H3突变引起的H3K27me3的减少伴随着H3K27ac水平的增加,这是一种与主动转录相关的翻译后修饰。组蛋白修饰的失调显著影响基因表达,通过促进不受控制的细胞增殖、肿瘤生长和代谢,促进癌症的发生和进展。DMG/DIPG改变蛋氨酸的代谢和三羧酸循环,以及葡萄糖和谷氨酰胺的摄取。表观遗传和代谢变化在DMG/DIPG发育中的作用已被广泛研究,了解这些变化对于开发针对这些途径的治疗方法至关重要。目前正在进行研究,以确定DMG/DIPG的新治疗靶点,这可能导致开发出针对这种毁灭性疾病的有效治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Epigenetic and Metabolic Changes in Diffuse Intrinsic Pontine Glioma.

Epigenetic and Metabolic Changes in Diffuse Intrinsic Pontine Glioma.

Epigenetic and Metabolic Changes in Diffuse Intrinsic Pontine Glioma.

Epigenetic and Metabolic Changes in Diffuse Intrinsic Pontine Glioma.

Diffuse midline glioma (DMG), hitherto known as diffuse intrinsic pontine glioma (DIPG), is a rare and aggressive form of brain cancer that primarily affects children. Although the exact cause of DMG/DIPG is not known, a large proportion of DMG/DIPG tumors harbor mutations in the gene encoding the histone H3 protein, specifically the H3K27M mutation. This mutation decreases the level of H3K27me3, a histone modification that plays a vital role in regulating gene expression through epigenetic regulation. The mutation also alters the function of polycomb repressive complex 2 (PRC2), thereby preventing the repression of genes associated with cancer development. The decrease in H3K27me3 caused by the histone H3 mutation is accompanied by an increase in the level of H3K27ac, a post-translational modification related to active transcription. Dysregulation of histone modification markedly affects gene expression, contributing to cancer development and progression by promoting uncontrolled cell proliferation, tumor growth, and metabolism. DMG/DIPG alters the metabolism of methionine and the tricarboxylic acid cycle, as well as glucose and glutamine uptake. The role of epigenetic and metabolic changes in the development of DMG/DIPG has been studied extensively, and understanding these changes is critical to developing therapies targeting these pathways. Studies are currently underway to identify new therapeutic targets for DMG/DIPG, which may lead to the development of effective treatments for this devastating disease.

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