Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.
Mol Biol Cell. 2010 Mar 1;21(5):767-77. doi: 10.1091/mbc.e09-11-0967. Epub 2010 Jan 6.
Axon regeneration is crucial for recovery after trauma to the nervous system. For neurons to recover from complete axon removal they must respecify a dendrite as an axon: a complete reversal of polarity. We show that Drosophila neurons in vivo can convert a dendrite to a regenerating axon and that this process involves rebuilding the entire neuronal microtubule cytoskeleton. Two major microtubule rearrangements are specifically induced by axon and not dendrite removal: 1) 10-fold up-regulation of the number of growing microtubules and 2) microtubule polarity reversal. After one dendrite reverses its microtubules, it initiates tip growth and takes on morphological and molecular characteristics of an axon. Only neurons with a single dendrite that reverses polarity are able to initiate tip growth, and normal microtubule plus-end dynamics are required to initiate this growth. In addition, we find that JNK signaling is required for both the up-regulation of microtubule dynamics and microtubule polarity reversal initiated by axon injury. We conclude that regulation of microtubule dynamics and polarity in response to JNK signaling is key to initiating regeneration of an axon from a dendrite.
轴突再生对于神经系统创伤后的恢复至关重要。为了使神经元从完整的轴突去除后恢复,它们必须将树突重新指定为轴突:极性的完全反转。我们表明,果蝇神经元在体内可以将树突转化为再生轴突,并且这个过程涉及重建整个神经元微管细胞骨架。两个主要的微管重排是由轴突而不是树突去除特异性诱导的:1)生长微管数量增加 10 倍,2)微管极性反转。在一个树突逆转其微管后,它启动尖端生长,并具有轴突的形态和分子特征。只有一个树突反转极性的神经元才能启动尖端生长,并且需要正常的微管末端动力学来启动这种生长。此外,我们发现 JNK 信号对于轴突损伤引发的微管动力学和微管极性反转的上调都是必需的。我们得出结论,JNK 信号响应中微管动力学和极性的调节是从树突起始轴突再生的关键。