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本文引用的文献

1
Centromeric histone H2B monoubiquitination promotes noncoding transcription and chromatin integrity.着丝粒组蛋白 H2B 单泛素化促进非编码转录和染色质完整性。
Nat Struct Mol Biol. 2014 Mar;21(3):236-43. doi: 10.1038/nsmb.2776. Epub 2014 Feb 16.
2
New insights into the RNA-based mechanism of action of the anticancer drug 5'-fluorouracil in eukaryotic cells.新型见解:抗癌药物 5'-氟尿嘧啶在真核细胞中基于 RNA 的作用机制。
PLoS One. 2013 Nov 1;8(11):e78172. doi: 10.1371/journal.pone.0078172. eCollection 2013.
3
MHF1-2/CENP-S-X performs distinct roles in centromere metabolism and genetic recombination.MHF1-2/CENP-S-X 在着丝粒代谢和遗传重组中发挥不同的作用。
Open Biol. 2013 Sep 11;3(9):130102. doi: 10.1098/rsob.130102.
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Genome-wide screening for genes associated with valproic acid sensitivity in fission yeast.全基因组筛选与裂殖酵母中丙戊酸敏感性相关的基因。
PLoS One. 2013 Jul 5;8(7):e68738. doi: 10.1371/journal.pone.0068738. Print 2013.
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Structure of the human telomeric Stn1-Ten1 capping complex.人端粒 Stn1-Ten1 加帽复合物的结构。
PLoS One. 2013 Jun 24;8(6):e66756. doi: 10.1371/journal.pone.0066756. Print 2013.
6
Histone deacetylase 4 mediates SMAD family member 4 deacetylation and induces 5-fluorouracil resistance in breast cancer cells.组蛋白去乙酰化酶 4 介导 SMAD 家族成员 4 的去乙酰化作用并诱导乳腺癌细胞对 5-氟尿嘧啶产生耐药性。
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7
A genome-wide screening of potential target genes to enhance the antifungal activity of micafungin in Schizosaccharomyces pombe.全基因组筛选潜在的靶基因以增强米卡芬净在裂殖酵母中的抗真菌活性。
PLoS One. 2013 May 30;8(5):e65904. doi: 10.1371/journal.pone.0065904. Print 2013.
8
ATP-dependent chromatin remodeling and histone acetyltransferases in 5-FU cytotoxicity in Saccharomyces cerevisiae.ATP依赖的染色质重塑和组蛋白乙酰转移酶在酿酒酵母5-氟尿嘧啶细胞毒性中的作用
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9
Evolutionarily repurposed networks reveal the well-known antifungal drug thiabendazole to be a novel vascular disrupting agent.进化再利用网络表明,广为人知的抗真菌药物噻苯达唑是一种新型的血管破坏剂。
PLoS Biol. 2012;10(8):e1001379. doi: 10.1371/journal.pbio.1001379. Epub 2012 Aug 21.
10
CENP-T-W-S-X forms a unique centromeric chromatin structure with a histone-like fold.着丝粒蛋白-T-W-S-X 形成具有组蛋白样折叠的独特着丝粒染色质结构。
Cell. 2012 Feb 3;148(3):487-501. doi: 10.1016/j.cell.2011.11.061.

染色体分离和组织是真核细胞中5-氟尿嘧啶的作用靶点。

Chromosome segregation and organization are targets of 5'-Fluorouracil in eukaryotic cells.

作者信息

Mojardín Laura, Botet Javier, Moreno Sergio, Salas Margarita

机构信息

a Instituto de Biología Molecular "Eladio Viñuela" (CSIC), Centro de Biología Molecular "Severo Ochoa" (CSIC-Universidad Autónoma) ; Cantoblanco , Madrid , Spain.

出版信息

Cell Cycle. 2015;14(2):206-18. doi: 10.4161/15384101.2014.974425.

DOI:10.4161/15384101.2014.974425
PMID:25483073
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4352961/
Abstract

The antimetabolite 5'-Fluorouracil (5FU) is an analog of uracil commonly employed as a chemotherapeutic agent in the treatment of a range of cancers including colorectal tumors. To assess the cellular effects of 5FU, we performed a genome-wide screening of the haploid deletion library of the eukaryotic model Schizosaccharomyces pombe. Our analysis validated previously characterized drug targets including RNA metabolism, but it also revealed unexpected mechanisms of action associated with chromosome segregation and organization (post-translational histone modification, histone exchange, heterochromatin). Further analysis showed that 5FU affects the heterochromatin structure (decreased levels of histone H3 lysine 9 methylation) and silencing (down-regulation of heterochromatic dg/dh transcripts). To our knowledge, this is the first time that defects in heterochromatin have been correlated with increased cytotoxicity to an anticancer drug. Moreover, the segregation of chromosomes, a process that requires an intact heterochromatin at centromeres, was impaired after drug exposure. These defects could be related to the induction of genes involved in chromatid cohesion and kinetochore assembly. Interestingly, we also observed that thiabendazole, a microtubule-destabilizing agent, synergistically enhanced the cytotoxic effects of 5FU. These findings point to new targets and drug combinations that could potentiate the effectiveness of 5FU-based treatments.

摘要

抗代谢物5'-氟尿嘧啶(5FU)是尿嘧啶的类似物,通常用作化疗药物,用于治疗包括结肠直肠肿瘤在内的一系列癌症。为了评估5FU的细胞效应,我们对真核模式生物粟酒裂殖酵母的单倍体缺失文库进行了全基因组筛选。我们的分析验证了先前已确定的药物靶点,包括RNA代谢,但也揭示了与染色体分离和组织相关的意外作用机制(翻译后组蛋白修饰、组蛋白交换、异染色质)。进一步分析表明,5FU会影响异染色质结构(组蛋白H3赖氨酸9甲基化水平降低)和沉默(异染色质dg/dh转录本下调)。据我们所知,这是首次将异染色质缺陷与对抗癌药物的细胞毒性增加联系起来。此外,染色体分离这一过程在着丝粒处需要完整的异染色质,在药物处理后受到了损害。这些缺陷可能与参与染色单体黏连和动粒组装的基因的诱导有关。有趣的是,我们还观察到,微管稳定剂噻苯达唑可协同增强5FU的细胞毒性作用。这些发现指出了新的靶点和药物组合,可能会增强基于5FU的治疗效果。