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Fli1 Represses Transcription of the Human α2(I) Collagen Gene by Recruitment of the HDAC1/p300 Complex

机译:Fli1通过招募HDAC1 / p300复合物抑制人类α2(I)胶原基因的转录

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摘要

Fli1, a member of the Ets transcription factor family, is a key repressor of the human α2(I) collagen (COL1A2) gene. Although our previous studies have delineated that TGF-β induces displacement of Fli1 from the COL1A2 promoter through sequential post-translational modifications, the detailed mechanism by which Fli1 functions as a potent transcriptional repressor of the COL1A2 gene has not been fully investigated. To address this issue, we carried out a series of experiments especially focusing on protein-protein interaction and epigenetic transcriptional regulation. The combination of tandem affinity purification and mass spectrometry identified HDAC1 as a Fli1 interacting protein. Under quiescent conditions, HDAC1 induced deacetylation of Fli1 resulting in an increase of Fli1 DNA binding ability and p300 enhanced this process by promoting the formation of a Fli1-HDAC1-p300 complex. TGF-β-induced phosphorylation of Fli1 at threonine 312 led to disassembly of this protein complex. In quiescent dermal fibroblasts Fli1, HDAC1, and p300 occupied the −404 to −237 region, including the Fli1 binding site, of the COL1A2 promoter. TGF-β induced Fli1 and HDAC1 dissociation from the COL1A2 promoter, while promoting Ets1 and p300 recruitment. Furthermore, acetylation levels of histone H3 around the Fli1 binding site in the COL1A2 promoter inversely correlated with the DNA occupancy of Fli1 and HDAC1, while positively correlating with that of Ets1 and p300. In the functional studies, HDAC1 overexpression magnified the inhibitory effect of Fli1 on the COL1A2 promoter. Moreover, pharmacological blockade of HDAC1 by entinostat enhanced collagen production in dermal fibroblasts. Collectively, these results indicate that under quiescent conditions Fli1 recruits HDAC1/p300 to the COL1A2 promoter and suppresses the expression of the COL1A2 gene by chromatin remodeling through histone deacetylation. TGF-β-dependent phosphorylation of Fli1 at threonine 312 is a critical step regulating the remodeling of the Fli1 transcription repressor complex, leading to transcriptional activation of the COL1A2 gene.
机译:Fli1是Ets转录因子家族的成员,是人类α2(I)胶原(COL1A2)基因的关键阻遏物。尽管我们先前的研究已经描述了TGF-β通过连续的翻译后修饰诱导Fli1从COL1A2启动子置换,但是Fli1作为COL1A2基因的有效转录阻遏物的详细机制尚未得到充分研究。为了解决这个问题,我们进行了一系列实验,特别是针对蛋白质间相互作用和表观遗传转录调控。串联亲和纯化和质谱相结合,确定HDAC1为Fli1相互作用蛋白。在静态条件下,HDAC1诱导Fli1脱乙酰化,导致Fli1 DNA结合能力增强,而p300通过促进Fli1-HDAC1-p300复合物的形成增强了该过程。 TGF-β诱导的苏氨酸312上Fli1的磷酸化导致该蛋白复合物的分解。在静止的皮肤成纤维细胞中,Fli1,HDAC1和p300占据了COL1A2启动子的-404至-237区,包括Fli1结合位点。 TGF-β诱导Fli1和HDAC1从COL1A2启动子解离,同时促进Ets1和p300募集。此外,COL1A2启动子中Fli1结合位点周围的组蛋白H3的乙酰化水平与Fli1和HDAC1的DNA占用率呈负相关,而与Ets1和p300的DNA占有率呈正相关。在功能研究中,HDAC1过表达放大了Fli1对COL1A2启动子的抑制作用。此外,恩替司他对HDAC1的药理作用增强了真皮成纤维细胞中胶原蛋白的产生。总的来说,这些结果表明,在静止条件下,Fli1将HDAC1 / p300募集到COL1A2启动子,并通过组蛋白脱乙酰基作用的染色质重塑来抑制COL1A2基因的表达。苏氨酸312上Fli1的TGF-β依赖性磷酸化是调节Fli1转录阻遏物复合物重塑的关键步骤,从而导致COL1A2基因的转录激活。

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