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Patterning Axon Targeting of Olfactory Receptor Neurons by Coupled Hedgehog Signaling at Two Distinct Steps

机译:在两个不同的步骤通过耦合的刺猬信号模式的嗅觉神经元轴突靶向。

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摘要

We present evidence for a coupled two-step action of Hedgehog signaling in patterning axon targeting of Drosophila olfactory receptor neurons (ORNs). In the first step, differential Hedgehog pathway activity in peripheral sensory organ precursors creates ORN populations with different levels of the Patched receptor. Different Patched levels in ORNs then determine axonal responsiveness to target-derived Hedgehog in the brain: only ORN axons that do not express high levels of Patched are responsive to and require a second step of Hedgehog signaling for target selection. Hedgehog signaling in the imaginal sensory organ precursors thus confers differential ORN responsiveness to Hedgehog-mediated axon targeting in the brain. This mechanism contributes to the spatial coordination of ORN cell bodies in the periphery and their glomerular targets in the brain. Such coupled two-step signaling may be more generally used to coordinate other spatially and temporally segregated developmental events.
机译:我们目前提供证据的刺猬信号的耦合的两步耦合模式在果蝇嗅觉受体神经元(ORNs)的轴突靶向模式。第一步,外周感觉器官前体中不同的刺猬途径活性产生具有不同水平的Patched受体的ORN群体。然后,ORN中不同的修补水平决定了大脑对靶标刺猬的轴突响应性:只有不表达高水平修补蛋白的ORN轴突才响应刺猬信号,并需要第二步才能进行靶选择。因此,想象的感觉器官前体中的刺猬信号传递赋予了对刺猬介导的轴突靶向大脑不同的ORN反应性。这种机制有助于外围的ORN细胞体及其在大脑中的肾小球靶标的空间协调。这种耦合的两步信令可以更普遍地用于协调其他在空间和时间上分离的发育事件。

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