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新型Notch等位基因揭示了一条依赖Deltex的抑制神经命运的途径。

Novel Notch alleles reveal a Deltex-dependent pathway repressing neural fate.

作者信息

Ramain P, Khechumian K, Seugnet L, Arbogast N, Ackermann C, Heitzler P

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM/ULP, 67404 Illkirch Cédex, France.

出版信息

Curr Biol. 2001 Nov 13;11(22):1729-38. doi: 10.1016/s0960-9822(01)00562-0.

Abstract

BACKGROUND

The Notch receptor triggers a wide range of cell fate choices in higher organisms. In Drosophila, segregation of neural from epidermal lineages results from competition among equivalent cells. These cells express achaete/scute genes, which confer neural potential. During lateral inhibition, a single neural precursor is selected, and neighboring cells are forced to adopt an epidermal fate. Lateral inhibition relies on proteolytic cleavage of Notch induced by the ligand Delta and translocation of the Notch intracellular domain (NICD) to the nuclei of inhibited cells. The activated NICD, interacting with Suppressor of Hairless [Su(H)], stimulates genes of the E(spl) complex, which in turn repress the proneural genes achaete/scute.

RESULTS

Here, we describe new alleles of Notch that specifically display loss of microchaetae sensory precursors. This phenotype arises from a repression of neural fate, by a Notch signaling distinct from that involved in lateral inhibition. We show that the loss of sensory organs associated with this phenotype results from a constitutive activation of a Deltex-dependent Notch-signaling event. These novel Notch alleles encode truncated receptors lacking the carboxy terminus of the NICD, which is the binding site for the repressor Dishevelled (Dsh). Dsh is known to be involved in crosstalk between Wingless and Notch pathways.

CONCLUSIONS

Our results reveal an antineural activity of Notch distinct from lateral inhibition mediated by Su(H). This activity, mediated by Deltex (Dx), represses neural fate and is antagonized by elements of the Wingless (Wg)-signaling cascade to allow alternative cell fate choices.

摘要

背景

Notch受体在高等生物中触发多种细胞命运选择。在果蝇中,神经谱系与表皮谱系的分离源于等效细胞之间的竞争。这些细胞表达achaete/scute基因,赋予神经潜能。在侧向抑制过程中,选择单个神经前体,相邻细胞被迫采用表皮命运。侧向抑制依赖于配体Delta诱导的Notch蛋白水解切割以及Notch细胞内结构域(NICD)向受抑制细胞细胞核的转运。活化的NICD与Hairless抑制因子[Su(H)]相互作用,刺激E(spl)复合体的基因,进而抑制神经前体基因achaete/scute。

结果

在此,我们描述了Notch的新等位基因,其特异性表现为微刚毛感觉前体缺失。这种表型源于与侧向抑制中涉及的Notch信号不同的Notch信号对神经命运的抑制。我们表明,与该表型相关的感觉器官缺失是由依赖Deltex的Notch信号事件的组成性激活导致的。这些新的Notch等位基因编码缺少NICD羧基末端的截短受体,该末端是阻遏蛋白Dishevelled(Dsh)的结合位点。已知Dsh参与Wingless和Notch信号通路之间的串扰。

结论

我们的结果揭示了Notch不同于由Su(H)介导的侧向抑制的抗神经活性。这种活性由Deltex(Dx)介导,抑制神经命运,并被Wingless(Wg)信号级联的元件拮抗,以允许替代细胞命运选择。

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