Mitchell Cancer Institute, University of South Alabama, Mobile, Alabama, United States of America.
Division of Cellular and Molecular Pathology, Department of Pathology, University of Alabama at Birmingham, Birmingham, Alabama, United States of America.
PLoS One. 2021 May 21;16(5):e0251515. doi: 10.1371/journal.pone.0251515. eCollection 2021.
Emerging evidence has shown that active enhancers are abundantly transcribed, generating long non-coding RNAs, called enhancer RNAs (eRNAs). While putative eRNAs are often observed from RNA sequencing, the roles of most eRNAs remain largely unknown. Previously, we identified putative enhancer regions at the MALAT1 locus that form chromatin-chromatin interactions under hypoxia, and one of these enhancers is located about 30 kb downstream of the NEAT1 gene and -20 kb upstream of the MALAT1 gene (MALAT1-20 kb enhancer). Here, we report that a novel eRNA, named eRNA of the NEAT1-MALAT1-Locus (eNEMAL), is transcribed from the MALAT1-20 kb enhancer and conserved in primates. We found that eNEMAL is upregulated in response to hypoxia in multiple breast cancer cell lines, but not in non-tumorigenic MCF10A cells. Overexpression and knockdown of eNEMAL revealed that alteration of eNEMAL level does not affect MALAT1 expression. Instead, we found that eNEMAL upregulates the long isoform of NEAT1 (NEAT1_2) without increasing the total NEAT1 transcript level in MCF7 breast cancer cells, suggesting that eNEMAL has a repressive effect on the 3'-end polyadenylation process required for generating the short isoform of NEAT1 (NEAT1_1). Altogether, we demonstrated that an eRNA transcribed from a MALAT1 enhancer regulates NEAT1 isoform expression, implicating the MALAT1-20 kb enhancer and its transcript eNEMAL in co-regulation of MALAT1 and NEAT1 in response to hypoxia in breast cancer cells.
新兴证据表明,活性增强子大量转录,产生长非编码 RNA,称为增强子 RNA(eRNA)。虽然从 RNA 测序中经常观察到推定的 eRNA,但大多数 eRNA 的作用仍知之甚少。此前,我们在 MALAT1 基因座鉴定了推定的增强子区域,这些区域在缺氧下形成染色质-染色质相互作用,其中一个增强子位于 NEAT1 基因下游约 30kb 处,MALAT1 基因上游约-20kb 处(MALAT1-20kb 增强子)。在这里,我们报告了一种新的 eRNA,命名为 NEAT1-MALAT1 基因座的 eRNA(eNEMAL),由 MALAT1-20kb 增强子转录,在灵长类动物中保守。我们发现,eNEMAL 在多种乳腺癌细胞系中受到缺氧的上调,但在非致瘤 MCF10A 细胞中没有上调。eNEMAL 的过表达和敲低表明,eNEMAL 水平的改变不会影响 MALAT1 的表达。相反,我们发现 eNEMAL 在 MCF7 乳腺癌细胞中上调 NEAT1 的长异构体(NEAT1_2),而不增加总 NEAT1 转录本水平,表明 eNEMAL 对生成 NEAT1 短异构体(NEAT1_1)所需的 3'-端多聚腺苷酸化过程有抑制作用。总之,我们证明了从 MALAT1 增强子转录的 eRNA 调节 NEAT1 异构体的表达,表明 MALAT1-20kb 增强子及其转录本 eNEMAL 在乳腺癌细胞对缺氧的 MALAT1 和 NEAT1 的共调节中起作用。