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本文引用的文献

1
G-quadruplex DNA as a molecular target for induced synthetic lethality in cancer cells.G-四链体 DNA 作为诱导癌细胞合成致死的分子靶标。
J Am Chem Soc. 2013 Jul 3;135(26):9640-3. doi: 10.1021/ja404868t. Epub 2013 Jun 25.
2
c-Myc and cancer metabolism.c-Myc 与癌症代谢。
Clin Cancer Res. 2012 Oct 15;18(20):5546-53. doi: 10.1158/1078-0432.CCR-12-0977.
3
Mechanisms of telomere loss and their consequences for chromosome instability.端粒缺失的机制及其对染色体不稳定性的影响。
Front Oncol. 2012 Oct 4;2:135. doi: 10.3389/fonc.2012.00135. eCollection 2012.
4
Genomic c-Myc quadruplex DNA selectively kills leukemia.基因组 c-Myc 四重结构 DNA 选择性杀死白血病细胞。
Mol Cancer Ther. 2012 Jan;11(1):66-76. doi: 10.1158/1535-7163.MCT-11-0515. Epub 2011 Nov 14.
5
Human telomeric G-quadruplex: the current status of telomeric G-quadruplexes as therapeutic targets in human cancer.人类端粒 G-四链体:端粒 G-四链体作为人类癌症治疗靶点的现状。
FEBS J. 2010 Mar;277(5):1118-25. doi: 10.1111/j.1742-4658.2009.07463.x. Epub 2009 Nov 27.
6
Tumour suppression by p53: a role for the DNA damage response?p53介导的肿瘤抑制作用:DNA损伤反应起作用吗?
Nat Rev Cancer. 2009 Oct;9(10):714-23. doi: 10.1038/nrc2716. Epub 2009 Sep 4.
7
Versatile DNA damage detection by the global genome nucleotide excision repair protein XPC.由全基因组核苷酸切除修复蛋白XPC进行的多功能DNA损伤检测。
J Cell Sci. 2008 Sep 1;121(Pt 17):2850-9. doi: 10.1242/jcs.031708. Epub 2008 Aug 5.
8
How shelterin protects mammalian telomeres.端粒保护蛋白复合体如何保护哺乳动物的端粒。
Annu Rev Genet. 2008;42:301-34. doi: 10.1146/annurev.genet.41.110306.130350.
9
Protection of telomeres through independent control of ATM and ATR by TRF2 and POT1.TRF2和POT1通过对ATM和ATR的独立调控来保护端粒。
Nature. 2007 Aug 30;448(7157):1068-71. doi: 10.1038/nature06065. Epub 2007 Aug 8.
10
Replication and protection of telomeres.端粒的复制与保护
Nature. 2007 Jun 21;447(7147):924-31. doi: 10.1038/nature05976.

c-Myc 四联体形成序列 Pu-27 可诱导 DNA 的端粒和非端粒区域广泛损伤。

c-Myc quadruplex-forming sequence Pu-27 induces extensive damage in both telomeric and nontelomeric regions of DNA.

机构信息

From the Department of Medicine and Molecular Targets Program, James Graham Brown Cancer Center, University of Louisville, Louisville, Kentucky 40202 and.

出版信息

J Biol Chem. 2014 Mar 21;289(12):8521-31. doi: 10.1074/jbc.M113.505073. Epub 2014 Jan 24.

DOI:10.1074/jbc.M113.505073
PMID:24464582
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3961676/
Abstract

Quadruplex-forming DNA sequences are present throughout the eukaryotic genome, including in telomeric DNA. We have shown that the c-Myc promoter quadruplex-forming sequence Pu-27 selectively kills transformed cells (Sedoris, K. C., Thomas, S. D., Clarkson, C. R., Muench, D., Islam, A., Singh, R., and Miller, D. M. (2012) Genomic c-Myc quadruplex DNA selectively kills leukemia. Mol. Cancer Ther. 11, 66-76). In this study, we show that Pu-27 induces profound DNA damage, resulting in striking chromosomal abnormalities in the form of chromatid or chromosomal breaks, radial formation, and telomeric DNA loss, which induces γ-H2AX in U937 cells. Pu-27 down-regulates telomeric shelterin proteins, DNA damage response mediators (RAD17 and RAD50), double-stranded break repair molecule 53BP1, G2 checkpoint regulators (CHK1 and CHK2), and anti-apoptosis gene survivin. Interestingly, there are no changes of DNA repair molecules H2AX, BRCA1, and the telomere maintenance gene, hTERT. ΔB-U937, where U937 cells stably transfected with deleted basic domain of TRF2 is partially sensitive to Pu-27 but exhibits no changes in expression of shelterin proteins. However, there is an up-regulation of CHK1, CHK2, H2AX, BRCA1, and survivin. Telomere dysfunction-induced foci assay revealed co-association of TRF1with γ-H2AX in ATM deficient cells, which are differentially sensitive to Pu-27 than ATM proficient cells. Alt (alternating lengthening of telomere) cells are relatively resistant to Pu-27, but there are no significant changes of telomerase activity in both Alt and non-Alt cells. Lastly, we show that this Pu-27-mediated sensitivity is p53-independent. The data therefore support two conclusions. First, Pu-27 induces DNA damage within both telomeric and nontelomeric regions of the genome. Second, Pu-27-mediated telomeric damage is due, at least in part, to compromise of the telomeric shelterin protein complex.

摘要

四链体形成 DNA 序列存在于真核生物基因组的各个部位,包括端粒 DNA 中。我们已经表明,c-Myc 启动子四链体形成序列 Pu-27 选择性地杀死转化细胞(Sedoris,K.C.,Thomas,S.D.,Clarkson,C.R.,Muench,D.,Islam,A.,Singh,R.,和 Miller,D.M.(2012)基因组 c-Myc 四链体 DNA 选择性杀死白血病。 Mol. Cancer Ther. 11, 66-76)。在这项研究中,我们表明 Pu-27 诱导了深刻的 DNA 损伤,导致 U937 细胞中出现明显的染色单体或染色体断裂、放射状形成和端粒 DNA 丢失等染色体异常。Pu-27 下调端粒庇护蛋白、DNA 损伤反应介质(RAD17 和 RAD50)、双链断裂修复分子 53BP1、G2 检查点调节剂(CHK1 和 CHK2)和抗凋亡基因 survivin。有趣的是,没有 DNA 修复分子 H2AX、BRCA1 和端粒维持基因 hTERT 的变化。在稳定转染了 TRF2 缺失碱性结构域的 U937 细胞 ΔB-U937 中,Pu-27 部分敏感,但庇护蛋白的表达没有变化。然而,CHK1、CHK2、H2AX、BRCA1 和 survivin 的表达上调。端粒功能障碍诱导焦点分析显示,TRF1 与 ATM 缺陷细胞中的 γ-H2AX 共结合,这些细胞对 Pu-27 的敏感性明显低于 ATM 功能正常的细胞。ALT(端粒交替延长)细胞对 Pu-27 相对耐药,但 ALT 和非 ALT 细胞中端粒酶活性均无明显变化。最后,我们表明这种 Pu-27 介导的敏感性与 p53 无关。因此,数据支持两个结论。首先,Pu-27 诱导基因组中端粒和非端粒区域的 DNA 损伤。其次,Pu-27 介导的端粒损伤至少部分是由于端粒庇护蛋白复合物的破坏。