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首页> 外文期刊>Journal of cell biology >Formation of microtubule-based traps controls the sorting and concentration of vesicles to restricted sites of regenerating neurons after axotomy
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Formation of microtubule-based traps controls the sorting and concentration of vesicles to restricted sites of regenerating neurons after axotomy

机译:基于微管的捕集器的形成控制了囊泡在轴突切开后向再生神经元的受限位点的分类和集中

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摘要

Transformation of a transected axonal tip into a growth cone (GC) is a critical step in the cascade leading to neuronal regeneration. Critical to the regrowth is the supply and concentration of vesicles at restricted sites along the cut axon. The mechanisms underlying these processes are largely unknown. Using online confocal imaging of transected, cultured Aplysia californica neurons, we report that axotomy leads to reorientation of the microtubule (MT) polarities and formation of two distinct MT-based vesicle traps at the cut axonal end. Approximately 100 μm proximal to the cut end, a selective trap for anterogradely transported vesicles is formed, which is the plus end trap. Distally, a minus end trap is formed that exclusively captures retrogradely transported vesicles. The concentration of anterogradely transported vesicles in the former trap optimizes the formation of a GC after axotomy.
机译:横断的轴突尖端转化为生长锥(GC)是导致神经元再生的级联中的关键步骤。对再生长至关重要的是切开的轴突沿受限部位的囊泡供应和集中。这些过程的潜在机制在很大程度上尚不清楚。使用横切,培养的加州海Ap神经元的在线共聚焦成像,我们报道了轴突切开术导致微管(MT)极性的重新定向和在切面的轴突末端形成两个不同的基于MT的囊泡陷阱。在切端附近大约100μm处,形成用于顺行运输囊泡的选择性阱,即正端阱。远处形成一个负端捕集器,专门捕获逆行运输的囊泡。前诱捕器中前行转运囊泡的浓度优化了轴切术后的GC形成。

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