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首页> 外文期刊>Development >Synergistic signaling by two BMP ligands through the SAX and TKV receptors controls wing growth and patterning in Drosophila.
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Synergistic signaling by two BMP ligands through the SAX and TKV receptors controls wing growth and patterning in Drosophila.

机译:两个BMP配体通过SAX和TKV受体的协同信号传导控制果蝇的机翼生长和模式。

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In Drosophila wing discs, a morphogen gradient of DPP has been proposed to determine the transcriptional response thresholds of the downstream genes sal and omb. We present evidence that the concentration of the type I receptor TKV must be low to allow long-range DPP diffusion. Low TKV receptor concentrations result, however, in low signaling activity. To enhance signaling at low DPP concentrations, we find that a second ligand, GBB, augments DPP/TKV activity. GBB signals primarily through the type I receptor SAX, which synergistically enhances TKV signaling and is required for proper OMB expression. We show that OMB expression in wing discs requires synergistic signaling by multiple ligands and receptors to overcome the limitations imposed on DPP morphogen function by receptor concentration levels.
机译:在果蝇翅片中,已经提出了DPP的形态发生子梯度来确定下游基因sal和omb的转录反应阈值。我们提供的证据表明,I型受体TKV的浓度必须低才能允许长距离DPP扩散。但是,低TKV受体浓度会导致低信号传导活性。为了增强低DPP浓度下的信号传导,我们发现第二个配体GBB增强了DPP / TKV活性。 GBB主要通过I型受体SAX发出信号,该信号协同增强TKV信号,是正确OMB表达所必需的。我们表明机翼圆盘中的OMB表达需要多个配体和受体的协同信号,以克服受体浓度水平对DPP形态发生子功能的限制。

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