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DDB2 suppresses tumorigenicity by limiting the cancer stem cell population in ovarian cancer.DDB2通过限制卵巢癌中的癌症干细胞群体来抑制肿瘤发生。
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p53 promotes repair of heterochromatin DNA by regulating JMJD2b and SUV39H1 expression.p53 通过调节 JMJD2b 和 SUV39H1 的表达促进异染色质 DNA 的修复。
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p38 MAPK- and Akt-mediated p300 phosphorylation regulates its degradation to facilitate nucleotide excision repair.p38MAPK 和 Akt 介导的 p300 磷酸化调节其降解,以促进核苷酸切除修复。
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DDB2 promotes chromatin decondensation at UV-induced DNA damage.DDB2 促进了 UV 诱导的 DNA 损伤处染色质的解凝聚。
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BRCA1 tumour suppression occurs via heterochromatin-mediated silencing.BRCA1 肿瘤抑制作用是通过异染色质介导的沉默实现的。
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Open chromatin in pluripotency and reprogramming.多能性和重编程中的开放染色质。
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The novel deacetylase inhibitor AR-42 demonstrates pre-clinical activity in B-cell malignancies in vitro and in vivo.新型去乙酰化酶抑制剂 AR-42 在体外和体内的 B 细胞恶性肿瘤中显示出临床前活性。
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Overexpression of DDB2 enhances the sensitivity of human ovarian cancer cells to cisplatin by augmenting cellular apoptosis.DDB2 的过表达通过增强细胞凋亡增强了人卵巢癌细胞对顺铂的敏感性。
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Histones: annotating chromatin.组蛋白:对染色质进行注释。
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异染色质和常染色质中DNA损伤形成与修复的差异

Differential DNA lesion formation and repair in heterochromatin and euchromatin.

作者信息

Han Chunhua, Srivastava Amit Kumar, Cui Tiantian, Wang Qi-En, Wani Altaf A

机构信息

Department of Radiology and.

James Cancer Hospital and Solove Research Institute, The Ohio State University Wexner Medical Center, Columbus, OH 43210, USA.

出版信息

Carcinogenesis. 2016 Feb;37(2):129-38. doi: 10.1093/carcin/bgv247. Epub 2015 Dec 30.

DOI:10.1093/carcin/bgv247
PMID:26717995
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5006209/
Abstract

Discretely orchestrated chromatin condensation is important for chromosome protection from DNA damage. However, it is still unclear how different chromatin states affect the formation and repair of nucleotide excision repair (NER) substrates, e.g. ultraviolet (UV)-induced cyclobutane pyrimidine dimers (CPD) and the pyrimidine (6-4) pyrimidone photoproducts (6-4PP), as well as cisplatin-induced intrastrand crosslinks (Pt-GG). Here, by using immunofluorescence and chromatin immunoprecipitation assays, we have demonstrated that CPD, which cause minor distortion of DNA double helix, can be detected in both euchromatic and heterochromatic regions, while 6-4PP and Pt-GG, which cause major distortion of DNA helix, can exclusively be detected in euchromatin, indicating that the condensed chromatin environment specifically interferes with the formation of these DNA lesions. Mechanistic investigation revealed that the class III histone deacetylase SIRT1 is responsible for restricting the formation of 6-4PP and Pt-GG in cells, probably by facilitating the maintenance of highly condensed heterochromatin. In addition, we also showed that the repair of CPD in heterochromatin is slower than that in euchromatin, and DNA damage binding protein 2 (DDB2) can promote the removal of CPD from heterochromatic region. In summary, our data provide evidence for differential formation and repair of DNA lesions that are substrates of NER. Both the sensitivity of DNA to damage and the kinetics of repair can be affected by the underlying level of chromatin compaction.

摘要

精心编排的染色质凝聚对于保护染色体免受DNA损伤至关重要。然而,目前仍不清楚不同的染色质状态如何影响核苷酸切除修复(NER)底物的形成和修复,例如紫外线(UV)诱导的环丁烷嘧啶二聚体(CPD)和嘧啶(6-4)嘧啶酮光产物(6-4PP),以及顺铂诱导的链内交联(Pt-GG)。在这里,通过使用免疫荧光和染色质免疫沉淀分析,我们已经证明,导致DNA双螺旋轻微扭曲的CPD可以在常染色质和异染色质区域中检测到,而导致DNA螺旋严重扭曲的6-4PP和Pt-GG只能在常染色质中检测到,这表明凝聚的染色质环境特异性地干扰了这些DNA损伤的形成。机制研究表明,III类组蛋白去乙酰化酶SIRT1负责限制细胞中6-4PP和Pt-GG的形成,可能是通过促进高度凝聚的异染色质的维持。此外,我们还表明,异染色质中CPD的修复比常染色质中慢,并且DNA损伤结合蛋白2(DDB2)可以促进CPD从异染色质区域的去除。总之,我们的数据为NER底物DNA损伤的差异形成和修复提供了证据。DNA对损伤的敏感性和修复动力学都可能受到染色质压缩潜在水平的影响。