Molecular Biology of the Cell II, German Cancer Research Center (DKFZ), DKFZ-ZMBH Alliance, 69120 Heidelberg, Germany.
Molecular Biology of the Cell II, German Cancer Research Center (DKFZ), DKFZ-ZMBH Alliance, 69120 Heidelberg, Germany.
Cell Rep. 2019 Mar 12;26(11):2904-2915.e4. doi: 10.1016/j.celrep.2019.02.059.
Transcription of the proto-oncogene SPHK1 is regulated by KHPS1, an antisense RNA that activates SPHK1 expression by forming a triple-helical RNA-DNA-DNA structure at the SPHK1 enhancer. Triplex-mediated tethering of KHPS1 to its target gene is required for recruitment of E2F1 and p300 and transcription of the RNA derived from the SPHK1 enhancer (eRNA-Sphk1). eRNA-Sphk1 evicts CTCF, which insulates the enhancer from the SPHK1 promoter, thus facilitating SPHK1 expression. Genomic deletion of the triplex-forming sequence attenuates SPHK1 expression, leading to decreased cell migration and invasion. Replacement of the triplex-forming region (TFR) of KHPS1 by the TFR of the lncRNA MEG3 tethers KHPS1 to the MEG3 target gene TGFBR1, underscoring the interchangeability and anchoring function of sequences involved in triplex formation. Altogether, the results reveal a triplex-driven feedforward mechanism involving lncRNA-dependent induction of eRNA, which enhances expression of specific target genes.
原癌基因 SPHK1 的转录受到 KHPS1 的调控,KHPS1 是一种反义 RNA,它通过在 SPHK1 增强子上形成三螺旋 RNA-DNA-DNA 结构来激活 SPHK1 的表达。三螺旋介导的 KHPS1 与其靶基因的连接对于招募 E2F1 和 p300 以及源自 SPHK1 增强子的 RNA(eRNA-Sphk1)的转录是必需的。eRNA-Sphk1 驱逐 CTCF,CTCF 可以将增强子与 SPHK1 启动子隔离开来,从而促进 SPHK1 的表达。三螺旋形成序列的基因组缺失会减弱 SPHK1 的表达,导致细胞迁移和侵袭减少。用长链非编码 RNA MEG3 的三螺旋形成区 (TFR) 替换 KHPS1 的 TFR,将 KHPS1 连接到 MEG3 的靶基因 TGFBR1 上,这突显了参与三螺旋形成的序列的可互换性和锚定功能。总之,这些结果揭示了一种三螺旋驱动的正反馈机制,涉及 lncRNA 依赖性诱导 eRNA,从而增强特定靶基因的表达。