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‘Building a perfect body’: control of vertebrate organogenesis by PBX-dependent regulatory networks

机译:打造完美的身体:依赖PBX的调控网络控制脊椎动物器官发生

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摘要

Pbx genes encode transcription factors that belong to the TALE (three-amino-acid loop extension) superclass of homeodomain proteins. We have witnessed a surge in information about the roles of this gene family as leading actors in the transcriptional control of development. PBX proteins represent a clear example of how transcription factors can regulate developmental processes by combinatorial properties, acting within multimeric complexes to implement activation or repression of transcription depending on their interaction partners. Here, we revisit long-emphasized functions of PBX transcription factors as cofactors for HOX proteins, major architects of the body plan. We further discuss new knowledge on roles of PBX proteins in different developmental contexts as upstream regulators of Hox genes—as factors that interact with non-HOX proteins and can work independently of HOX—as well as potential pioneer factors. Committed to building a perfect body, PBX proteins govern regulatory networks that direct essential morphogenetic processes and organogenesis in vertebrate development. Perturbations of PBX-dependent networks can cause human congenital disease and cancer.
机译:Pbx基因编码的转录因子属于同源域蛋白的TALE(三氨基酸环延伸)超类。我们目睹了有关该基因家族在发育转录控制中的主要作用的信息激增。 PBX蛋白代表转录因子如何通过组合特性调节多态复合物内多聚体复合物以实现转录激活或抑制(取决于它们的相互作用伴侣)的方式,从而调控发育过程的明确例子。在这里,我们将重提PBX转录因子作为HOX蛋白质辅因子的长期强调的功能,这是人体计划的主要设计师。我们进一步讨论了有关PBX蛋白在不同的开发环境中作为Hox基因的上游调节剂的作用的新知识,以及与非HOX蛋白相互作用并且可以独立于HOX起作用的因素以及潜在的先驱因素。致力于构建完美的身体,PBX蛋白控制着调控网络,该网络指导脊椎动物发育中必不可少的形态发生过程和器官发生。 PBX依赖性网络的扰动可能导致人类先天性疾病和癌症。

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