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Senseless acts as a binary switch during sensory organ precursor selection

机译:在感觉器官前体的选择过程中无意义的行为充当了二进制开关

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摘要

During sensory organ precursor (SOP) specification, a single cell is selected from a proneural cluster of cells. Here, we present evidence that Senseless (Sens), a zinc-finger transcription factor, plays an important role in this process. We show that Sens is directly activated by proneural proteins in the presumptive SOPs and a few cells surrounding the SOP in most tissues. In the cells that express low levels of Sens, it acts in a DNA-binding-dependent manner to repress transcription of proneural genes. In the presumptive SOPs that express high levels of Sens, it acts as a transcriptional activator and synergizes with proneural proteins. We therefore propose that Sens acts as a binary switch that is fundamental to SOP selection.
机译:在感觉器官前体(SOP)规范期间,从前体细胞簇中选择单个细胞。在这里,我们提供证据表明,锌指转录因子Senseless(Sens)在此过程中起着重要作用。我们显示,Sens是由推测的SOP中的proneural蛋白和大多数组织中围绕SOP的一些细胞直接激活的。在表达低水平Sens的细胞中,它以依赖DNA结合的方式起作用,抑制前突基因的转录。在表达高水平Sens的推定SOP中,它起着转录激活剂的作用,并与前体蛋白协同作用。因此,我们建议将Sens用作对SOP选择至关重要的二进制开关。

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