首页> 外文期刊>Nucleic Acids Research >Chromatin-associated HMG-17 is a major regulator of homeodomain transcription factor activity modulated by Wnt/beta-catenin signaling.
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Chromatin-associated HMG-17 is a major regulator of homeodomain transcription factor activity modulated by Wnt/beta-catenin signaling.

机译:染色质相关的HMG-17是由Wnt /β-catenin信号传导调节的同源结构域转录因子活性的主要调节剂。

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摘要

Homeodomain (HD) transcriptional activities are tightly regulated during embryogenesis and require protein interactions for their spatial and temporal activation. The chromatin-associated high mobility group protein (HMG-17) is associated with transcriptionally active chromatin, however its role in regulating gene expression is unclear. This report reveals a unique strategy in which, HMG-17 acts as a molecular switch regulating HD transcriptional activity. The switch utilizes the Wnt/beta-catenin signaling pathway and adds to the diverse functions of beta-catenin. A high-affinity HMG-17 interaction with the PITX2 HD protein inhibits PITX2 DNA-binding activity. The HMG-17/PITX2 inactive complex is concentrated to specific nuclear regions primed for active transcription. beta-Catenin forms a ternary complex with PITX2/HMG-17 to switch it from a repressor to an activator complex. Without beta-catenin, HMG-17 can physically remove PITX2 from DNA to inhibit its transcriptional activity. The PITX2/HMG-17 regulatory complex acts independently of promoter targets and is a general mechanism for the control of HD transcriptional activity. HMG-17 is developmentally regulated and its unique role during embryogenesis is revealed by the early embryonic lethality of HMG-17 homozygous mice. This mechanism provides a new role for canonical Wnt/beta-catenin signaling in regulating HD transcriptional activity during development using HMG-17 as a molecular switch.
机译:同源域(HD)转录活性在胚胎发生过程中受到严格调节,并且需要蛋白质相互作用才能实现其时空激活。染色质相关的高迁移率族蛋白(HMG-17)与转录活性染色质相关,但是尚不清楚其在调控基因表达中的作用。该报告揭示了一种独特的策略,其中HMG-17充当调节HD转录活性的分子开关。该开关利用Wnt /β-catenin信号通路,并增加了β-catenin的多种功能。与PITX2 HD蛋白的高亲和力HMG-17相互作用抑制了PITX2 DNA结合活性。 HMG-17 / PITX2失活复合物集中在特定的核区域,这些区域预备了活跃的转录。 β-Catenin与PITX2 / HMG-17形成三元复合物,将其从阻遏物转换为激活物复合物。没有β-catenin,HMG-17可以从DNA上物理去除PITX2,从而抑制其转录活性。 PITX2 / HMG-17调节复合物的作用独立于启动子靶,并且是控制HD转录活性的一般机制。 HMG-17受发育调节,在HMG-17纯合小鼠的早期胚胎致死率中揭示了其在胚胎发生过程中的独特作用。该机制为规范Wnt /β-catenin信号传导在使用HMG-17作为分子开关的发育过程中调节HD转录活性中提供了新的作用。

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