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首页> 外文期刊>Scientific reports. >Roles of Enhancer RNAs in RANKL-induced Osteoclast Differentiation Identified by Genome-wide Cap-analysis of Gene Expression using CRISPR/Cas9
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Roles of Enhancer RNAs in RANKL-induced Osteoclast Differentiation Identified by Genome-wide Cap-analysis of Gene Expression using CRISPR/Cas9

机译:增强子RNA在基因表达式基因表达式中鉴定的Rancancer RNA在Rankl诱导的骨核苷酸分化中使用CRISPR / CAS9

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Bidirectional transcription has been proposed to play a role associated with enhancer activity. Transcripts called enhancer RNAs (eRNAs) play important roles in gene regulation; however, their roles in osteoclasts are unknown. To analyse eRNAs in osteoclasts comprehensively, we used cap-analysis of gene expression (CAGE) to detect adjacent transcription start sites (TSSs) that were distant from promoters for protein-coding gene expression. When comparing bidirectional TSSs between osteoclast precursors and osteoclasts, we found that bidirectional TSSs were located in the 5′-flanking regions of the Nrp2 and Dcstamp genes. We also detected bidirectional TSSs in the intron region of the Nfatc1 gene. To investigate the role of bidirectional transcription in osteoclasts, we performed loss of function analyses using the CRISPR/Cas9 system. Targeted deletion of the DNA regions between the bidirectional TSSs led to decreased expression of the bidirectional transcripts, as well as the protein-coding RNAs of Nrp2, Dcstamp, and Nfatc1, suggesting that these transcripts act as eRNAs. Furthermore, osteoclast differentiation was impaired by targeted deletion of bidirectional eRNA regions. The combined results show that eRNAs play important roles in osteoclastogenic gene regulation, and may therefore provide novel insights to elucidate the transcriptional mechanisms that control osteoclast differentiation.
机译:已经提出了双向转录来发挥与增强剂活动相关的作用。称为增强子RNA(ERNAS)的转录物在基因调节中起重要作用;然而,它们在破骨细胞中的作用是未知的。为了综合地分析骨核糖体中的ERNAS,我们使用了基因表达(笼)的CAP分析来检测与蛋白质编码基因表达的启动子远离启动子的相邻转录起始位点(TSSS)。当比较破骨细胞前体和破骨细胞之间的双向TSS时,我们发现双向TSS位于NRP2和DCSTAMP基因的5'侧侧区域中。我们还检测到NFATC1基因的内含子区域的双向TSSS。为了探讨双向转录在破骨细胞中的作用,我们使用CRISPR / CAS9系统进行了功能分析的丧失。针对双向TSSS之间的DNA区域导致双向转录物的表达降低,以及NRP2,DCSTAMP和NFATC1的蛋白质编码RNA,表明这些转录物充当ERNAS。此外,通过针对双向欧尔纳地区的靶向缺失损害骨细胞分化。合并的结果表明,欧尔斯在骨酸膨胀基因调节中起重要作用,因此可以提供新的见解,以阐明控制破骨细胞分化的转录机制。

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