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CBX3 普遍染色质开口元件的 CpG 位点是抗沉默功能的关键结构决定因素。

The CpG-sites of the CBX3 ubiquitous chromatin opening element are critical structural determinants for the anti-silencing function.

机构信息

Reprogramming and Gene Therapy Group, REBIRTH Cluster of Excellence, Hannover Medical School, 30625, Hannover, Germany.

Institute of Experimental Hematology, Hannover Medical School, 30625, Hannover, Germany.

出版信息

Sci Rep. 2017 Aug 11;7(1):7919. doi: 10.1038/s41598-017-04212-8.

Abstract

Suppression of therapeutic transgene expression from retroviral gene therapy vectors by epigenetic defence mechanisms represents a problem that is particularly encountered in pluripotent stem cells (PSCs) and their differentiated progeny. Transgene expression in these cells, however, can be stabilised by CpG-rich ubiquitous chromatin opening elements (UCOEs). In this context we recently demonstrated profound anti-silencing properties for the small (679 bp) CBX3-UCO element and we now confirmed this observation in the context of the defined murine chromosomal loci ROSA26 and TIGRE. Moreover, since the structural basis for the anti-silencing activity of UCOEs has remained poorly defined, we interrogated various CBX3 subfragments in the context of lentiviral vectors and murine PSCs. We demonstrated marked though distinct anti-silencing activity in the pluripotent state and during PSC-differentiation for several of the CBX3 subfragments. This activity was significantly correlated with CpG content as well as endogenous transcriptional activity. Interestingly, also a scrambled CBX3 version with preserved CpG-sites retained the anti-silencing activity despite the lack of endogenous promoter activity. Our data therefore highlight the importance of CpG-sites and transcriptional activity for UCOE functionality and suggest contributions from different mechanisms to the overall anti-silencing function of the CBX3 element.

摘要

逆转录病毒基因治疗载体的治疗性转基因表达受到表观遗传防御机制的抑制,这是多能干细胞(PSCs)及其分化后代中特别遇到的问题。然而,这些细胞中的转基因表达可以通过富含 CpG 的普遍染色质开放元件(UCOEs)来稳定。在这方面,我们最近证明了小(679bp)CBX3-UCO 元件具有很强的抗沉默特性,现在我们在确定的小鼠染色体基因座 ROSA26 和 TIGRE 中证实了这一观察结果。此外,由于 UCOE 抗沉默活性的结构基础仍未得到很好的定义,我们在慢病毒载体和小鼠 PSCs 中研究了各种 CBX3 亚片段。我们证明了在多能状态和 PSC 分化过程中,几个 CBX3 亚片段具有明显但不同的抗沉默活性。这种活性与 CpG 含量以及内源性转录活性显著相关。有趣的是,即使是保留 CpG 位点的乱序 CBX3 版本,尽管缺乏内源性启动子活性,但也保留了抗沉默活性。因此,我们的数据强调了 CpG 位点和转录活性对 UCOE 功能的重要性,并表明不同机制对 CBX3 元件整体抗沉默功能的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/768e/5554207/1d9931e849a4/41598_2017_4212_Fig1_HTML.jpg

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