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首页> 外文期刊>Nature Communications >Engulfing cells promote neuronal regeneration and remove neuronal debris through distinct biochemical functions of CED-1
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Engulfing cells promote neuronal regeneration and remove neuronal debris through distinct biochemical functions of CED-1

机译:吞噬细胞通过CED-1独特的生化功能促进神经元再生并清除神经元碎片

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摘要

Two important biological events happen coincidently soon after nerve injury in the peripheral nervous system in C. elegans: removal of axon debris and initiation of axon regeneration. But, it is not known how these two events are co-regulated. Mutants of ced-1, a homolog of Draper and MEGF10, display defects in both events. One model is that those events could be related. But our data suggest that they are actually separable. CED-1 functions in the muscle-type engulfing cells in both events and is enriched in muscle protrusions in close contact with axon debris and regenerating axons. Its two functions occur through distinct biochemical mechanisms; extracellular domain-mediated adhesion for regeneration and extracellular domain binding-induced intracellular domain signaling for debris removal. These studies identify CED-1 in engulfing cells as a receptor in debris removal but as an adhesion molecule in neuronal regeneration, and have important implications for understanding neural circuit repair after injury.
机译:秀丽隐杆线虫周围神经系统神经损伤后不久,同时发生了两个重要的生物学事件:轴突碎片的清除和轴突再生的开始。但是,尚不知道这两个事件是如何共同调节的。 ced-1(Draper和MEGF10的同源物)的突变体在两个事件中均显示出缺陷。一种模型是那些事件可能是相关的。但是我们的数据表明它们实际上是可分离的。 CED-1在这两种情况下均在肌肉型吞噬细胞中起作用,并在与轴突碎片紧密接触并再生轴突的肌肉突起中富集。它的两种功能是通过不同的生化机制发生的。细胞外域介导的粘附再生和细胞外域结合诱导的细胞内域信号清除碎片。这些研究确定吞噬细胞中的CED-1是清除碎片的受体,但是神经元再生的黏附分子,对理解损伤后的神经回路修复具有重要意义。

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