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首页> 外文期刊>Developmental biology >Coupling the roles of Hox genes to regulatory networks patterning cranial neural crest
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Coupling the roles of Hox genes to regulatory networks patterning cranial neural crest

机译:将Hox基因的作用耦合到监管网络图案颅骨神经嵴

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The neural crest is a transient population of cells that forms within the developing central nervous system and migrates away to generate a wide range of derivatives throughout the body during vertebrate embryogenesis. These cells are of evolutionary and clinical interest, constituting a key defining trait in the evolution of vertebrates and alterations in their development are implicated in a high proportion of birth defects and craniofacial abnormalities. In the hindbrain and the adjacent cranial neural crest cells (cNCCs), nested domains of Hox gene expression provide a combinatorial'Hox-code' for specifying regional properties in the developing head. Hox genes have been shown to play important roles at multiple stages in cNCC development, including specification, migration, and differentiation. However, relatively little is known about the underlying gene regulatory mechanisms involved, both upstream and downstream of Hox genes. Furthermore, it is still an open question as to how the genes of the neural crest GRN are linked to Hox-dependent pathways. In this review, we describe Hox gene expression, function and regulation in cNCCs with a view to integrating these genes within the emerging gene regulatory network for cNCC development. We highlight early roles for Hox1 genes in cNCC specification, proposing that this may be achieved, in part, by regulation of the balance between pluripotency and differentiation in precursor cells within the neuro-epithelium. We then describe what is known about the regulation of Hox gene expression in cNCCs and discuss this from the perspective of early vertebrate evolution.
机译:神经嵴是一种短暂的细胞群,在显影中枢神经系统中形成,并在脊椎动物胚胎发生过程中迁移到整个身体的各种衍生物。这些细胞具有进化和临床兴趣,构成了脊椎动物演化中的关键定义特征,并以高比例的出生缺陷和颅面异常涉及其发展中的改变。在后脑和相邻的颅神经嵴细胞(CNCC)中,HOX基因表达的嵌套结构域提供了组合的,用于在显影头中指定区域性质。已显示HOX基因在CNCC开发中的多个阶段起到重要作用,包括规范,迁移和分化。然而,关于霍尔基因的上游和下游所涉及的潜在基因调节机制,相对较少。此外,目前仍然是神经嵴GN的基因与Hox依赖性途径有何相关问题。在该综述中,我们描述了CNCCS中的HOX基因表达,功能和调节,以便将这些基因与CNCC发育的新出现基因调节网络中的整合。我们突出了CNCC规范中HOX1基因的早期作用,提出可以部分地通过调节神经上皮内前体细胞中多能性和分化之间的平衡来实现。然后,我们描述了关于CNCCS中HOX基因表达的调节的知名,并从早期脊椎动物演化的角度讨论了这一点。

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