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H3K4me2 and WDR5 enriched chromatin interacting long non-coding RNAs maintain transcriptionally competent chromatin at divergent transcriptional units

机译:H3K4ME2和WDR5富集的染色质相互作用长的非编码RNA在发散的转录单元下维持转录能力的染色质

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摘要

Recently lncRNAs have been implicated in the sub-compartmentalization of eukaryotic genome via genomic targeting of chromatin remodelers. To explore the function of lncRNAs in the maintenance of active chromatin, we characterized lncRNAs from the chromatin enriched with H3K4me2 and WDR5 using chromatin RNA immunoprecipitation (ChRIP). Significant portion of these enriched lncRNAs were arranged in antisense orientation with respect to their protein coding partners. Among these, 209 lncRNAs, commonly enriched in H3K4me2 and WDR5 chromatin fractions, were named as active chromatin associated lncRNAs (active lncCARs). Interestingly, 43% of these active lncCARs map to divergent transcription units. Divergent transcription (XH) units were overrepresented in the active lncCARs as compared to the inactive lncCARs. ChIP-seq analysis revealed that active XH transcription units are enriched with H3K4me2, H3K4me3 and WDR5. WDR5 depletion resulted in the loss of H3K4me3 but not H3K4me2 at the XH promoters. Active XH CARs interact with and recruit WDR5 to XH promoters, and their depletion leads to decrease in the expression of the corresponding protein coding genes and loss of H3K4me2, H3K4me3 and WDR5 at the active XH promoters. This study unravels a new facet of chromatin-based regulation at the divergent XH transcription units by this newly identified class of H3K4me2/WDR5 chromatin enriched lncRNAs.
机译:最近lncRNAs有牵连通过染色质remodelers的基因组靶向真核基因组的子划分。探讨在维持活性的染色质的lncRNAs的功能,我们从与H3K4me2与WDR5使用染色质免疫沉淀RNA(ChRIP)富集的染色质,其特征在于lncRNAs。这些富集lncRNAs的显著部分被安排在反义方向相对于它们的蛋白质编码的合作伙伴。在这些中,209个lncRNAs,在H3K4me2与WDR5通常富集染色质级分,分别命名为活性染色质相关联lncRNAs(活性lncCARs)。有趣的是,这些活性lncCARs的43%映射到不同的转录单位。发散转录(XH)单位的活性lncCARs为超额相比于非活动lncCARs。芯片起分析表明,活性XH转录单元与H3K4me2,H3K4me3的和WDR5富集。 WDR5耗竭导致的H3K4me3,但不是H3K4me2的在XH发起人的损失。活性XH汽车行驶和招WDR5到XH启动子相互作用,以及它们的消耗导致在相应的蛋白质编码基因和H3K4me2,H3K4me3的和WDR5的损失在活性XH的启动子的表达降低。本研究通过这个新发现的类H3K4me2 / WDR5染色质丰富lncRNAs的揭开在发散XH转录单元基于染色质调控的一个新的方面。

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  • 来源
    《Nucleic Acids Research》 |2018年第18期|共17页
  • 作者单位

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Med Biochem &

    Cell Biol S-40530 Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Med Biochem &

    Cell Biol S-40530 Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Med Biochem &

    Cell Biol S-40530 Gothenburg Sweden;

    Gothenburg Univ Sahlgrenska Acad Inst Biomed Dept Clin Chem &

    Transfus Med Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Med Biochem &

    Cell Biol S-40530 Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Med Biochem &

    Cell Biol S-40530 Gothenburg Sweden;

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  • 正文语种 eng
  • 中图分类 生物化学;
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