Division of Translational Medicine, Sidra Medical and Research Center, Doha 26999, Qatar.
Division of Biomedical Informatics, Sidra Medical and Research Center, Doha 26999, Qatar.
Sci Rep. 2017 Jan 31;7:41598. doi: 10.1038/srep41598.
The C2H2-type zinc finger protein ZNF764 acts as an enhancer for several steroid hormone receptors, and haploinsufficiency of this gene may be responsible for tissue resistance to multiple steroid hormones including glucocorticoids observed in a patient with 16p11.2 microdeletion. We examined genome-wide regulatory actions of ZNF764 on the glucocorticoid receptor (GR) in HeLa cells as a model system. ZNF764- and GR-binding sites demonstrated similar distribution in various genomic features. They positioned predominantly around 50-500 kbs from the transcription start sites of their nearby genes, and were closely localized with each other, overlapping in ~37% of them. ZNF764 demonstrated differential on/off effects on GR-binding and subsequent mRNA expression: some genes were highly dependent on the presence/absence of ZNF764, but others were not. Pathway analysis revealed that these 3 gene groups were involved in distinct cellular activities. ZNF764 physically interacted with GR at ligand-binding domain through its KRAB domain, and both its physical interaction to GR and zinc finger domain appear to be required for ZNF764 to regulate GR transcriptional activity. Thus, ZNF764 is a cofactor directing GR transcriptional activity toward specific biologic pathways by changing GR binding and transcriptional activity on the glucocorticoid-responsive genes.
C2H2 型锌指蛋白 ZNF764 作为几种类固醇激素受体的增强子,该基因的杂合缺失可能是导致患者 16p11.2 微缺失中观察到的多种类固醇激素(包括糖皮质激素)组织抵抗的原因。我们以 HeLa 细胞为模型系统,研究了 ZNF764 对糖皮质激素受体 (GR) 的全基因组调节作用。ZNF764 和 GR 结合位点在各种基因组特征中的分布具有相似性。它们主要位于其附近基因的转录起始位点 50-500kb 左右,彼此位置接近,其中约 37% 相互重叠。ZNF764 对 GR 结合和随后的 mRNA 表达表现出不同的开启/关闭效应:一些基因高度依赖 ZNF764 的存在/不存在,但其他基因则不然。通路分析显示,这 3 组基因参与了不同的细胞活动。ZNF764 通过其 KRAB 结构域与 GR 的配体结合域发生物理相互作用,其与 GR 的物理相互作用及其锌指结构域似乎都需要 ZNF764 来调节 GR 的转录活性。因此,ZNF764 是一种辅因子,通过改变糖皮质激素反应基因上的 GR 结合和转录活性,将 GR 转录活性导向特定的生物学途径。