Lee Nara, Maurange Cédric, Ringrose Leonie, Paro Renato
Centre for Molecular Biology Heidelberg (ZMBH), University of Heidelberg, 69120 Heidelberg, Germany.
Nature. 2005 Nov 10;438(7065):234-7. doi: 10.1038/nature04120.
During the regeneration of Drosophila imaginal discs, cellular identities can switch fate in a process known as transdetermination. For leg-to-wing transdetermination, the underlying mechanism involves morphogens such as Wingless that, when activated outside their normal context, induce ectopic expression of the wing-specific selector gene vestigial. Polycomb group (PcG) proteins maintain cellular fates by controlling the expression patterns of homeotic genes and other developmental regulators. Here we report that transdetermination events are coupled to PcG regulation. We show that the frequency of transdetermination is enhanced in PcG mutant flies. Downregulation of PcG function, as monitored by the reactivation of a silent PcG-regulated reporter gene, is observed in transdetermined cells. This downregulation is directly controlled by the Jun amino-terminal kinase (JNK) signalling pathway, which is activated in cells undergoing regeneration. Accordingly, transdetermination frequency is reduced in a JNK mutant background. This regulatory interaction also occurs in mammalian cells, indicating that the role of this signalling cascade in remodelling cellular fates may be conserved.
在果蝇成虫盘再生过程中,细胞身份可通过一种称为转决定的过程改变命运。对于腿到翅的转决定,其潜在机制涉及诸如无翅蛋白等形态发生素,当它们在正常环境之外被激活时,会诱导翅特异性选择基因残翅的异位表达。多梳蛋白组(PcG)蛋白通过控制同源异型基因和其他发育调节因子的表达模式来维持细胞命运。在此,我们报告转决定事件与PcG调控相关联。我们发现,在PcG突变果蝇中转决定频率增加。在转决定细胞中观察到PcG功能下调,这通过沉默的PcG调控报告基因的重新激活来监测。这种下调由Jun氨基末端激酶(JNK)信号通路直接控制,该信号通路在经历再生的细胞中被激活。因此,在JNK突变背景中转决定频率降低。这种调节相互作用在哺乳动物细胞中也会发生,表明该信号级联在重塑细胞命运中的作用可能是保守的。