Instituto de Fisiología Celular, Departamento de Genética Molecular, Universidad Nacional Autónoma de México, México City 04510, México;
Genes Dev. 2014 Apr 1;28(7):723-34. doi: 10.1101/gad.236869.113.
The multifunctional CCCTC-binding factor (CTCF) protein exhibits a broad range of functions, including that of insulator and higher-order chromatin organizer. We found that CTCF comprises a previously unrecognized region that is necessary and sufficient to bind RNA (RNA-binding region [RBR]) and is distinct from its DNA-binding domain. Depletion of cellular CTCF led to a decrease in not only levels of p53 mRNA, as expected, but also those of Wrap53 RNA, an antisense transcript originated from the p53 locus. PAR-CLIP-seq (photoactivatable ribonucleoside-enhanced cross-linking and immunoprecipitation [PAR-CLIP] combined with deep sequencing) analyses indicate that CTCF binds a multitude of transcripts genome-wide as well as to Wrap53 RNA. Apart from its established role at the p53 promoter, CTCF regulates p53 expression through its physical interaction with Wrap53 RNA. Cells harboring a CTCF mutant in its RBR exhibit a defective p53 response to DNA damage. Moreover, the RBR facilitates CTCF multimerization in an RNA-dependent manner, which may bear directly on its role in establishing higher-order chromatin structures in vivo.
多功能 CCCTC 结合因子 (CTCF) 蛋白表现出广泛的功能,包括绝缘子和高级染色质组织因子。我们发现 CTCF 包含一个以前未被识别的区域,该区域对于结合 RNA 是必需和充分的(RNA 结合区域 [RBR]),并且与其 DNA 结合域不同。细胞 CTCF 的耗竭不仅导致 p53 mRNA 水平下降(如预期的那样),而且导致来自 p53 基因座的反义转录本 Wrap53 RNA 水平下降。PAR-CLIP-seq(光激活核苷酸增强交联和免疫沉淀 [PAR-CLIP] 与深度测序相结合)分析表明,CTCF 在全基因组范围内结合多种转录本,以及结合 Wrap53 RNA。除了在 p53 启动子处的既定作用外,CTCF 通过与 Wrap53 RNA 的物理相互作用来调节 p53 的表达。在其 RBR 中含有 CTCF 突变的细胞表现出对 DNA 损伤的 p53 反应缺陷。此外,RBR 以 RNA 依赖的方式促进 CTCF 多聚化,这可能直接影响其在体内建立高级染色质结构的作用。