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Alternative isoforms of KDM2A and KDM2B lysine demethylases negatively regulate canonical Wnt signaling

机译:KDM2A和KDM2B赖氨酸脱甲基酶的替代同种型负调节规范WNT信号传导

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A precisely balanced activity of canonical Wnt signaling is essential for a number of biological processes and its perturbation leads to developmental defects or diseases. Here, we demonstrate that alternative isoforms of the KDM2A and KDM2B lysine demethylases have the ability to negatively regulate canonical Wnt signaling. These KDM2A and KDM2B isoforms (KDM2A-SF and KDM2B-SF) lack the N-terminal demethylase domain, but they still have the ability to bind to CpG islands in promoters and to interact with their protein partners via their other functional domains. We have observed that KDM2A-SF and KDM2B-SF bind to the promoters of axin 2 and cyclin D1, two canonical Wnt signaling target genes, and repress their activity. Moreover, KDM2A-SF and KDM2B-SF are both able to strongly repress a Wnt-responsive luciferase reporter. The transcriptional repression mediated by KDM2A-SF and KDM2B-SF, but also by KDM2A-LF, is dependent on their DNA binding domain, while the N-terminal demethylase domain is dispensable for this process. Surprisingly, KDM2B-LF is unable to repress both the endogenous promoters and the luciferase reporter. Finally, we show that both KDM2A-SF and KDM2B-SF are able to interact with TCF7L1, one of the transcriptional mediators of canonical Wnt signaling. KDM2A-SF and KDM2B-SF are thus likely to negatively affect the transcription of canonical Wnt signaling target genes by binding to their promoters and by interacting with TCF7L1 and other co-repressors.
机译:规范Wnt信号传导的精确平衡活性对于许多生物过程至关重要,并且其扰动导致发育缺陷或疾病。这里,我们证明了KDM2A和KDM2B赖氨酸去甲基酶的替代同种型具有负调节规范的WNT信号传导的能力。这些KDM2A和KDM2B同种型(KDM2A-SF和KDM2B-SF)缺乏N-末端去甲基酶结构域,但它们仍然能够与促进剂中的CPG岛结合并通过其它功能域与其蛋白质合作伙伴相互作用。我们观察到KDM2A-SF和KDM2B-SF与轴2和细胞周期蛋白D1的启动子结合,两种规范WNT信号传导靶基因,并抑制其活性。此外,KDM2A-SF和KDM2B-SF都能够强烈地压制WNT响应荧光素酶报告。由KDM2A-SF和KDM2B-SF介导的转录抑制,但也通过KDM2A-LF依赖于其DNA结合结构域,而N-末端去甲基酶结构域是该方法的分配。令人惊讶的是,KDM2B-LF无法压制内源性启动子和荧光素酶报告。最后,我们表明KDM2A-SF和KDM2B-SF都能够与TCF7L1相互作用,即规范WNT信号传导的转录介质之一。因此,KDM2A-SF和KDM2B-SF可能会通过与其启动子结合并通过与TCF7L1和其他共压抑制器相互作用来负面影响规范WNT信号传导靶基因的转录。

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