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Antagonistic regulation by insulin-like peptide and activin ensures the elaboration of appropriate dendritic field sizes of amacrine neurons

机译:胰岛素样肽和激活素的拮抗作用确保了无长突神经元的适当树突区域大小的精细化

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摘要

Establishing appropriate sizes and shapes of dendritic arbors is critical for proper wiring of the central nervous system. Here we report that Insulin-like Peptide 2 (DILP2) locally activates transiently expressed insulin receptors in the central dendrites of Dm8 amacrine neurons to positively regulate dendritic field elaboration. We found DILP2 was expressed in L5 lamina neurons, which have axonal terminals abutting Dm8 dendrites. Proper Dm8 dendrite morphogenesis and synapse formation required insulin signaling through TOR (target of rapamycin) and SREBP (sterol regulatory element-binding protein), acting in parallel with previously identified negative regulation by Activin signaling to provide robust control of Dm8 dendrite elaboration. A simulation of dendritic growth revealed trade-offs between dendritic field size and robustness when branching and terminating kinetic parameters were constant, but dynamic modulation of the parameters could mitigate these trade-offs. We suggest that antagonistic DILP2 and Activin signals from different afferents appropriately size Dm8 dendritic fields.
机译:建立适当大小和形状的树突状树突对于中枢神经系统的正确布线至关重要。在这里我们报告说,胰岛素样肽2(DILP2)局部激活Dm8无长突神经元中央树突中的瞬时表达的胰岛素受体,以正向调节树突场的形成。我们发现DILP2在L5椎板神经元中表达,L5椎板神经元的轴突末端与Dm8树突邻接。正确的Dm8树突形态发生和突触形成需要通过TOR(雷帕霉素的靶标)和SREBP(固醇调节元素结合蛋白)进行胰岛素信号传导,同时与之前通过激活素信号传导确定的负调控作用同时提供对Dm8树突细化过程的强有力控制。树枝状生长的模拟显示,当分支和终止动力学参数恒定时,在树枝状区域大小和鲁棒性之间进行了折衷,但是参数的动态调节可以减轻这些折衷。我们建议,来自不同传入体的拮抗性DILP2和激活素信号大小适当地决定了Dm8树突区域的大小。

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