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Hox regulation of transcription: more complex(es)

机译:Hox调控转录:更复杂(es)

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摘要

Hox genes encode transcription factors with important roles during embryogenesis and tissue differentiation. Genetic analyses initially demonstrated that interfering with Hox genes has profound effects on the specification of cell identity, suggesting that Hox proteins regulate very specific sets of target genes. However, subsequent biochemical analyses revealed that Hox proteins bind DNA with relatively low affinity and specificity. Furthermore, it became clear that a given Hox protein could activate or repress transcription, depending on the context. A resolution to these paradoxes presented itself with the discovery that Hox proteins do not function in isolation, but interact with other factors in complexes. The first such \u22cofactors\u22 were members of the Extradenticle/Pbx and Homothorax/Meis/Prep families. However, the list of Hox-interacting proteins has continued to grow, suggesting that Hox complexes contain many more components than initially thought. Additionally, the activities of the various components and the exact mechanisms whereby they modulate the activity of the complex remain puzzling. Here, we review the various proteins known to participate in Hox complexes and discuss their likely functions. We also consider that Hox complexes of different compositions may have different activities and discuss mechanisms whereby Hox complexes may be switched between active and inactive states.
机译:Hox基因编码在胚胎发生和组织分化过程中起重要作用的转录因子。遗传分析最初表明,干扰Hox基因对细胞身份的规范具有深远的影响,这表明Hox蛋白调节非常特定的靶基因集。但是,随后的生化分析表明,Hox蛋白以相对较低的亲和力和特异性结合DNA。此外,很明显,根据上下文,给定的Hox蛋白可以激活或抑制转录。解决这些矛盾的方法是发现Hox蛋白不能单独发挥作用,而是与复合物中的其他因子相互作用。第一个这样的辅助因子是Extradenticle / Pbx和Homothorax / Meis / Prep家族的成员。但是,与Hox相互作用的蛋白质的清单在不断增加,这表明Hox复合物包含的成分比最初想象的要多。另外,各种成分的活性以及它们调节复合物活性的确切机理仍然令人费解。在这里,我们审查了已知参与Hox复杂的各种蛋白质,并讨论了它们可能的功能。我们还认为不同组成的Hox配合物可能具有不同的活性,并讨论了Hox配合物可以在活跃状态和非活跃状态之间切换的机制。

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