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Rhombomere-specific analysis reveals the repertoire of genetic cues expressed across the developing hindbrain

机译:Rhombomere特异性分析揭示了发育中的后脑表达的遗传提示的全部内容

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Background The Hox family of homeodomain transcription factors comprises pivotal regulators of cell specification and identity during animal development. However, despite their well-defined roles in the establishment of anteroposterior pattern and considerable research into their mechanism of action, relatively few target genes have been identified in the downstream regulatory network. We have sought to investigate this issue, focussing on the developing hindbrain and the cranial motor neurons that arise from this region. The reiterated anteroposterior compartments of the developing hindbrain (rhombomeres (r)) are normally patterned by the combinatorial action of distinct Hox genes. Alteration in the normal pattern of Hox cues in this region results in a transformation of cellular identity to match the remaining Hox profile, similar to that observed in Drosophila homeotic transformations. Results To define the repertoire of genes regulated in each rhombomere, we have analysed the transcriptome of each rhombomere from wild-type mouse embryos and not those where pattern is perturbed by gain or loss of Hox gene function. Using microarray and bioinformatic methodologies in conjunction with other confirmatory techniques, we report here a detailed and comprehensive set of potential Hox target genes in r2, r3, r4 and r5. We have demonstrated that the data produced are both fully reflective and predictive of rhombomere identity and, thus, may represent some the of Hox targets. These data have been interrogated to generate a list of candidate genes whose function may contribute to the generation of neuronal subtypes characteristic of each rhombomere. Interestingly, the data can also be classified into genetic motifs that are predicted by the specific combinations of Hox genes and other regulators of hindbrain anteroposterior identity. The sets of genes described in each or combinations of rhombomeres span a wide functional range and suggest that the Hox genes, as well as other regulatory inputs, exert their influence across the full spectrum of molecular machinery. Conclusion We have performed a systematic survey of the transcriptional status of individual segments of the developing mouse hindbrain and identified hundreds of previously undescribed genes expressed in this region. The functional range of the potential candidate effectors or upstream modulators of Hox activity suggest multiple unexplored mechanisms. In particular, we present evidence of a potential new retinoic acid signalling system in ventral r4 and propose a model for the refinement of identity in this region. Furthermore, the rhombomeres demonstrate a molecular relationship to each other that is consistent with known observations about neurogenesis in the hindbrain. These findings give the first genome-wide insight into the complexity of gene expression during patterning of the developing hindbrain.
机译:背景同源域转录因子的Hox家族包括动物发育过程中细胞规格和特性的关键调节因子。然而,尽管它们在前后模式的建立中起着明确的作用,并且对其作用机理进行了大量研究,但在下游调控网络中却鉴定出相对较少的靶基因。我们试图研究这个问题,重点是从该区域出现的后脑和颅运动神经元的发展。发育中的后脑(rhombomeres(r))的反复前后隔室通常是通过不同的Hox基因的组合作用来形成图案的。该区域中Hox提示正常模式的改变导致细胞身份的转变,以匹配其余的Hox轮廓,类似于果蝇同源转换中观察到的。结果为了定义每个菱形调控基因的组成,我们分析了野生型小鼠胚胎的每个菱形转录组,而不是那些受到Hox基因功能的获得或丧失干扰的模式的转录组。结合其他验证技术,结合使用微阵列和生物信息学方法,我们在这里报告了r2,r3,r4和r5中一组潜在的Hox靶基因的详细详细信息。我们已经证明,所产生的数据既可以充分反映和预测菱形的同一性,因此也可以代表一些Hox目标。这些数据已被询问以生成候选基因列表,其功能可能有助于每个菱形的特征性神经元亚型的产生。有趣的是,数据还可以归类为由Hox基因和后脑前后身份同一调节剂的特定组合预测的遗传基序。菱形的每一种或组合中描述的基因集涵盖广泛的功能范围,表明Hox基因以及其他调控输入在分子机制的整个范围内发挥其影响。结论我们对发育中的小鼠后脑各个节段的转录状态进行了系统的调查,并鉴定了该区域中表达的数百个先前未描述的基因。 Hox活性的潜在候选效应子或上游调节剂的功能范围表明多种未探索的机制。特别是,我们提出了腹侧r4中潜在的新视黄酸信号系统的证据,并提出了在该区域进行身份细化的模型。此外,菱形小节显示出彼此的分子关系,这与关于后脑神经发生的已知观察一致。这些发现为全基因组发育中后脑的模式形成过程中基因表达的复杂性提供了第一个全基因组的见识。

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