首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Samd7 is a cell type-specific PRC1 component essential for establishing retinal rod photoreceptor identity
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PNAS Plus: Samd7 is a cell type-specific PRC1 component essential for establishing retinal rod photoreceptor identity

机译:PNAS Plus:Samd7是特定于细胞类型的PRC1组件对于建立视网膜视杆感光器身份至关重要

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摘要

Precise transcriptional regulation controlled by a transcription factor network is known to be crucial for establishing correct neuronal cell identities and functions in the CNS. In the retina, the expression of various cone and rod photoreceptor cell genes is regulated by multiple transcription factors; however, the role of epigenetic regulation in photoreceptor cell gene expression has been poorly understood. Here, we found that Samd7, a rod-enriched sterile alpha domain (SAM) domain protein, is essential for silencing nonrod gene expression through H3K27me3 regulation in rod photoreceptor cells. Samd7-null mutant mice showed ectopic expression of nonrod genes including S-opsin in rod photoreceptor cells and rod photoreceptor cell dysfunction. Samd7 physically interacts with Polyhomeotic homologs (Phc proteins), components of the Polycomb repressive complex 1 (PRC1), and colocalizes with Phc2 and Ring1B in Polycomb bodies. ChIP assays showed a significant decrease of H3K27me3 in the genes up-regulated in the Samd7-deficient retina, showing that Samd7 deficiency causes the derepression of nonrod gene expression in rod photoreceptor cells. The current study suggests that Samd7 is a cell type-specific PRC1 component epigenetically defining rod photoreceptor cell identity.
机译:已知由转录因子网络控制的精确转录调控对于在CNS中建立正确的神经元细胞身份和功能至关重要。在视网膜中,多种视锥细胞和视杆细胞的基因表达受多种转录因子的调控。然而,表观遗传调控在感光细胞基因表达中的作用还知之甚少。在这里,我们发现Samd7,富含杆的无菌alpha域(SAM)域蛋白,对于通过杆感光细胞中的H3K27me3调节来沉默非杆基因表达至关重要。 Samd7-null突变小鼠在杆感光细胞和杆感光细胞功能障碍中显示非杆基因(包括S-视蛋白)的异位表达。 Samd7与Polycomb阻抑复合物1(PRC1)的成分Polyhomotic同系物(Phc蛋白)物理相互作用,并在Polycomb体内与Phc2和Ring1B共定位。 ChIP分析显示,Samd7缺陷型视网膜中上调的基因中H3K27me3显着降低,表明Samd7缺陷导致杆感光细胞中非杆基因表达的抑制。当前的研究表明Samd7是一种细胞类型特异性PRC1成分,在表观遗传上定义杆感光细胞的身份。

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