RIKEN Center for Integrative Medical Sciences, Yokohama, Japan.
Autosome.org, Russia.
PLoS One. 2024 May 6;19(5):e0295971. doi: 10.1371/journal.pone.0295971. eCollection 2024.
The human genome is pervasively transcribed and produces a wide variety of long non-coding RNAs (lncRNAs), constituting the majority of transcripts across human cell types. Some specific nuclear lncRNAs have been shown to be important regulatory components acting locally. As RNA-chromatin interaction and Hi-C chromatin conformation data showed that chromatin interactions of nuclear lncRNAs are determined by the local chromatin 3D conformation, we used Hi-C data to identify potential target genes of lncRNAs. RNA-protein interaction data suggested that nuclear lncRNAs act as scaffolds to recruit regulatory proteins to target promoters and enhancers. Nuclear lncRNAs may therefore play a role in directing regulatory factors to locations spatially close to the lncRNA gene. We provide the analysis results through an interactive visualization web portal at https://fantom.gsc.riken.jp/zenbu/reports/#F6_3D_lncRNA.
人类基因组广泛转录,并产生多种长非编码 RNA(lncRNA),构成了人类细胞类型中大多数转录本。一些特定的核 lncRNA 已被证明是重要的局部调节成分。由于 RNA-染色质相互作用和 Hi-C 染色质构象数据表明核 lncRNA 的染色质相互作用取决于局部染色质 3D 构象,我们使用 Hi-C 数据来鉴定 lncRNA 的潜在靶基因。RNA-蛋白质相互作用数据表明,核 lncRNA 可作为支架,将调节蛋白募集到靶启动子和增强子。因此,核 lncRNA 可能在指导调节因子到与 lncRNA 基因空间上接近的位置方面发挥作用。我们通过 https://fantom.gsc.riken.jp/zenbu/reports/#F6_3D_lncRNA 的交互式可视化网络门户提供分析结果。