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Revisiting the role of the Gcm transcription factor, from master regulator to Swiss army knife

机译:重新探讨Gcm转录因子的作用,从总调控子到瑞士军刀

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Master genes are known to induce the differentiation of a multipotent cell into a specific cell type. These molecules are often transcription factors that switch on the regulatory cascade that triggers cell specification. Gcm was first described as the master gene of the glial fate in Drosophila as it induces the differentiation of neuroblasts into glia in the developing nervous system. Later on, Gcm was also shown to regulate the differentiation of blood, tendon and peritracheal cells as well as that of neuronal subsets. Thus, the glial master gene is used in at least 4 additional systems to promote differentiation. To understand the numerous roles of Gcm, we recently reported a genome-wide screen of Gcm direct targets in the Drosophila embryo. This screen provided new insight into the role and mode of action of this powerful transcription factor, notably on the interactions between Gcm and major differentiation pathways such as the Hedgehog, Notch and JAK/STAT. Here, we discuss the mode of action of Gcm in the different systems, we present new tissues that require Gcm and we revise the concept of master gene'.
机译:已知主基因可诱导多能细胞分化为特定细胞类型。这些分子通常是转录因子,可触发触发细胞规格的调节级联反应。 Gcm首先被描述为果蝇中神经胶质命运的主要基因,因为它在发育中的神经系统中诱导成神经细胞分化为神经胶质。后来,Gcm还被证明可以调节血液,肌腱和气管周围细胞以及神经元亚群的分化。因此,神经胶质母体基因被用于至少4个额外的系统中以促进分化。为了了解Gcm的众多作用,我们最近报道了果蝇胚胎中Gcm直接靶标的全基因组筛选。该屏幕为这种强大的转录因子的作用和作用方式提供了新的见解,尤其是在Gcm与主要分化途径(例如刺猬,Notch和JAK / STAT)之间的相互作用上。在这里,我们讨论了Gcm在不同系统中的作用方式,我们提出了需要Gcm的新组织,并修订了主基因的概念。

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