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A network of broadly expressed hlh genes regulates tissue-specific cell fates

机译:广泛表达的hlh基因组成的网络调节组织特异性细胞的命运

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Spatial and temporal expression of specific basic-helix-loop-helix (bHLH) transcription factors defines many types of cellular differentiation. We find that a distinct mechanism regulates the much broader expression of the heterodimer partners of these specific factors and impinges on differentiation. In Drosophila, a cross-interacting regulatory network links expression of the E protein Daughterless (Da), which heterodimerizes with bHLH proteins to activate them, with expression of the Id protein Extramacrochaetae (Emc), which antagonizes bHLH proteins. Coupled transcriptional feedback loops maintain the widespread Emc expression that restrains Da expression, opposing bHLH-dependent differentiation while enhancing growth and cell survival. Where extracellular signals repress emc, Da expression can increase. This defines regions of proneural ectoderm independently from the proneural bHLH genes. Similar regulation is found in multiple Drosophila tissues and in mammalian cells and therefore is likely to be a conserved general feature of developmental regulation by HLH proteins.
机译:特定的基本螺旋-环-螺旋(bHLH)转录因子的时空表达定义了许多类型的细胞分化。我们发现一种独特的机制调节这些特定因素的异二聚体伴侣的更广泛表达,并影响分化。在果蝇中,一个交叉相互作用的调节网络将E蛋白无子(Da)的表达与bHLH蛋白异二聚化以激活它们,而Id蛋白Extramacrochaetae(Emc)的表达则拮抗bHLH蛋白。耦合的转录反馈环维持广泛的Emc表达,该表达抑制Da表达,反对bHLH依赖的分化,同时提高生长和细胞存活率。当细胞外信号抑制emc时,Da表达会增加。这定义了独立于bHLH基因的proneural外胚层区域。在多个果蝇组织和哺乳动物细胞中发现了类似的调控,因此很可能是HLH蛋白对发育调控的保守的一般特征。

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