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The cell-cycle regulator geminin inhibits Hox function through direct and polycomb-mediated interactions

机译:细胞周期调节剂geminin通过直接和多梳介导的相互作用抑制Hox功能

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Embryonic development is tightly controlled. The clustered genes of the Hox family of homeobox proteins play an important part in regulating this development and also proliferation. They specify embryonic structures along the body axis, and are associated with normal and malignant cell growth. The cell-cycle regulator geminin controls replication by binding to the licensing factor Cdt1, and is involved in neural differentiation. Here, we show that murine geminin associates transiently with members of the Hox-repressing polycomb complex, with the chromatin of Hox regulatory DNA elements and with Hox proteins. Gain- and loss-of-function experiments in the chick neural tube demonstrate that geminin modulates the anterior boundary of Hoxb9 transcription, which suggests a polycomb-like activity for geminin. The interaction between geminin and Hox proteins prevents Hox proteins from binding to DNA, inhibits Hox-dependent transcriptional activation of reporter and endogenous downstream target genes, and displaces Cdtl from its complex with geminin. By establishing competitive regulation, geminin functions as a coordinator of developmental and proliferative control.
机译:胚胎发育受到严格控制。 Hox同源盒蛋白家族的簇状基因在调节这种发育和增殖中起着重要的作用。它们沿体轴指定胚胎结构,并与正常和恶性细胞生长有关。细胞周期调节剂geminin通过与许可因子Cdt1结合来控制复制,并参与神经分化。在这里,我们显示了鼠双胚蛋白与Hox抑制性多梳复合体的成员,Hox调节DNA元件的染色质和Hox蛋白瞬时关联。在雏鸡神经管中进行功能获得和丧失功能的实验表明,双倍蛋白可调节Hoxb9转录的前边界,这表明双倍蛋白对双倍蛋白具有类似聚梳的活性。 geminin和Hox蛋白之间的相互作用可防止Hox蛋白与DNA结合,抑制报告基因和内源性下游靶基因的Hox依赖性转录激活,并从其与geminin的复合物中置换Cdtl。通过建立竞争性法规,双倍体蛋白可充当发育和增殖控制的协调者。

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