首页> 外文期刊>Neurologia medico-chirurgica. >Aberrant Transcriptional Regulation of Super-enhancers by RET Finger Protein-histone Deacetylase 1 Complex in Glioblastoma: Chemoresistance to Temozolomide
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Aberrant Transcriptional Regulation of Super-enhancers by RET Finger Protein-histone Deacetylase 1 Complex in Glioblastoma: Chemoresistance to Temozolomide

机译:RET手指蛋白 - 组蛋白脱乙酰酶1络合物在胶质母细胞瘤中的异常转录调节:化学血栓制

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摘要

Glioblastoma (GBM), the most common primary brain tumor, is the most aggressive human cancers, with a median survival rate of only 14.6 months. Temozolomide (TMZ) is the frontline chemotherapeutic drug in GBM. Drug resistance is the predominant obstacle in TMZ therapy. Drug resistance occurs via multiple pathways such as DNA mismatch repair and base excision repair systems, by which glioma cells acquire chemoresistance to some extent (5% and 95%, respectively). Histone3 Lysin27 residue-acetylation (H3K27ac) status regulates cis-regulatory elements, which increases the likelihood of gene transcription. Histone deacetylase (HDAC) complex deacetylate lysine residues on core histones, leading to a decrease in gene transcription. In cis-regulatory element regions, complexes with HDAC repress histones by H3K27ac deacetylation. The cis-regulating and three-dimensional transcriptional mechanism is called "superenhancer". RET finger protein (RFP) is a protein that is expressed in many kinds of cancer. RFP forms a protein complex with HDAC1. The disruption of the RFP-HDAC1 complex has resulted in increased drug sensitivity in other cancers. We conclude that the downregulation of RFP or the disruption of the RFP/HDAC1 complex leads to an increase in TMZ efficacy in glioblastoma by changing histone modifications which lead to changes in cell division, cell cycle and apoptosis.
机译:胶质母细胞瘤(GBM),最常见的原发性脑肿瘤,是最具侵略性的人类癌症,中位存活率仅为14.6个月。 Temozolomide(TMZ)是GBM中的前线化学治疗药物。耐药性是TMZ治疗中的主要障碍。耐药性通过多种途径发生,例如DNA失配修复和基础切除修复系统,通过该胶质瘤细胞在一定程度上获得化学性(分别为5%和95%)。组蛋白3 Lysin27残基 - 乙酰化(H3K27AC)状态调节顺式调节元素,这增加了基因转录的可能性。组蛋白脱乙酰酶(HDAC)核心组蛋白的脱乙酰化赖氨酸残基,导致基因转录减少。在顺式调节元区中,H3K27AC脱乙酰化与HDAC压制组蛋白的复合物。顺式调节和三维转录机制称为“超级汉师”。 RET手指蛋白(RFP)是一种在许多种类癌症中表达的蛋白质。 RFP与HDAC1形成蛋白质复合物。 RFP-HDAC1综合体的破坏导致其他癌症的药物敏感性增加。我们得出结论,RFP的下调或RFP / HDAC1复合物的破坏导致通过改变组蛋白修饰,导致细胞分裂,细胞周期和细胞凋亡的变化增加胶质母细胞瘤中TMZ疗效的增加。

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