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一周快讯:本周表观文献精选(2017.9.23)

23Plus  · 公众号  · 生物  · 2017-09-23 08:00

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本周我们精选了近一周发表的优秀文献与你共享,如果你对我们选取的文献有自己深入的解读和见解,欢迎投稿【Plus深读】栏目,在23plus上分享你的视角和思维,这是一个展示的舞台,也许也是一段友情,一次合作的起点哦!


 

文末有彩蛋,记得看下去哦!



Nature 

Epigenetic restriction of extraembryonic lineages mirrors the somatic transition to cancer

Zachary D. Smith,   Jiantao Shi,       Hongcang Gu, Julie Donaghey,        Kendell Clement,     Davide Cacchiarelli,          Andreas Gnirke,         Franziska Michor     & Alexander Meissner

http://www.nature.com/nature/journal/vaop/ncurrent/full/nature23891.html


胚胎外表观基因组,是个什么鬼?


Abstract:

In mammals, the canonical somatic DNA methylation landscape is established upon specification of the embryo proper and subsequently disrupted within many cancer types. However, the underlying mechanisms that direct this genome-scale transformation remain elusive, with no clear model for its systematic acquisition or potential developmental utility. Here, we analysed global remethylation from the mouse preimplantation embryo into the early epiblast and extraembryonic ectoderm. We show that these two states acquire highly divergent genomic distributions with substantial disruption of bimodal, CpG density-dependent methylation in the placental progenitor. The extraembryonic epigenome includes specific de novo methylation at hundreds of embryonically protected CpG island promoters, particularly those that are associated with key developmental regulators and are orthologously methylated across most human cancer types. Our data suggest that the evolutionary innovation of extraembryonic tissues may have required co-option of DNA methylation-based suppression as an alternative to regulation by Polycomb-group proteins, which coordinate embryonic germ-layer formation in response to extraembryonic cues. Moreover, we establish that this decision is made deterministically, downstream of promiscuously used—and frequently oncogenic—signalling pathways, via a novel combination of epigenetic cofactors. Methylation of developmental gene promoters during tumorigenesis may therefore reflect the misappropriation of an innate trajectory and the spontaneous reacquisition of a latent, developmentally encoded epigenetic landscape.

DOI:10.1038/nature23891


Cell

Genome Regulation by Polycomb and Trithorax: 70 Years and Counting

Bernd Schuettengruber, Henri-Marc Bourbon,Luciano Di Croce, and Giacomo Cavalli 

http://www.cell.com/cell/fulltext/S0092-8674(17)30890-5


70年庆典,想看么?


Abstract:

Polycomb (PcG) and Trithorax (TrxG) group proteins are evolutionarily conserved chromatin-modifying factors originally identified as part of an epigenetic cellular memory system that maintains repressed or active gene expression states. Recently, they have been shown to globally control a plethora of cellular processes. This functional diversity is achieved by their ability to regulate chromatin at multiple levels, ranging from modifying local chromatin structure to orchestrating the three-dimensional organization of the genome. Understanding this system is a fascinating challenge of critical relevance for biology and medicine, since misexpression or mutation of multiple PcG components,as well as of TrxG members of the COMPASS family and of the SWI/SNFcomplex, is implicated in cancer and other diseases.

DOI: http://dx.doi.org/10.1016/j.cell.2017.08.002


Science Translational Medicine

Neutrophiltransfer of miR-223 to lung epithelial cells dampens acute lung injury in mice

Viola Neudecker,*, Kelley S. Brodsky, EricT. Clambey, Eric P. Schmidt, Thomas A. Packard,……, Peter M. Henson,and Holger K. Eltzschig

http://stm.sciencemag.org/content/9/408/eaah5360


miRNA,这次的主角又是你!


Abstract:

Intercellular transfer of microRNAs canmediate communication between critical effector cells. We hypothesized that transfer of neutrophil-derived microRNAs to pulmonary epithelial cells couldalter mucosal gene expression during acute lung injury. Pulmonary-epithelialmicroRNA profiling during coculture of alveolar epithelial cells withpolymorphonuclear neutrophils (PMNs) revealed a selective increase in lungepithelial cell expression of microRNA-223 (miR-223). Analysis of PMN-derivedsupernatants showed activation-dependent release of miR-223 and subsequenttransfer to alveolar epithelial cells during coculture in vitro or afterventilator-induced acute lung injury in mice. Genetic studies indicated thatmiR-223 deficiency was associated with severe lung inflammation, whereaspulmonary overexpression of miR-223 in mice resulted in protection during acutelung injury induced by mechanical ventilation or by infection withStaphylococcus aureus. Studies of putative miR-223 gene targets implicatedrepression of poly(adenosine diphosphate–ribose) polymerase–1 (PARP-1) in themiR-223–dependent attenuation of lung inflammation. Together, these findingssuggest that intercellular transfer of miR-223 from neutrophils to pulmonaryepithelial cells may dampen acute lung injury through repression of PARP-1.

DOI: 10.1126/scitranslmed.aah5360


感谢上期大家的踊跃投票,下周将看到大家期待的深读作品上场,尽请期待哦!


你可能想看,几篇近期的“Plus深读”:

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Plus深读 | Science重磅发现:不止DNA,表观基因组也可跨代遗传!

Plus深读|Nature:甲基化5’RNA端帽m6Am控制mRNA的稳定性

Plus深读 | G9a或许是印记基因疾病PWS的药物靶点


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