Dey Swagata, Kumar Nitish, Balakrishnan Supraja, Koushika Sandhya P, Ghosh-Roy Anindya
Cellular and Molecular Neuroscience, National Brain Research Centre, Manesar, Gurugram, Haryana 122052, India.
Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai, Maharashtra 400005, India.
Mol Biol Cell. 2024 Sep 1;35(9):ar115. doi: 10.1091/mbc.E23-08-0335. Epub 2024 Jul 10.
The polarized nature of neurons depends on their microtubule dynamics and orientation determined by both microtubule-stabilizing and destabilizing factors. The role of destabilizing factors in developing and maintaining neuronal polarity is unclear. We investigated the function of KLP-7, a microtubule depolymerizing motor of the Kinesin-13 family, in axon-dendrite compartmentalization using PVD neurons in . Loss of KLP-7 caused a mislocalization of axonal proteins, including RAB-3, SAD-1, and their motor UNC-104, to dendrites. This is rescued by cell-autonomous expression of the KLP-7 or colchicine treatment, indicating the involvement of KLP-7-dependent microtubule depolymerization. The high mobility of KLP-7 is correlated to increased microtubule dynamics in the dendrites, which restricts the enrichment of UNC-44, an integral component of Axon Initial Segment (AIS) in these processes. Due to the loss of KLP-7, ectopic enrichment of UNC-44 in the dendrite potentially redirects axonal traffic into dendrites that include plus-end out microtubules, axonal motors, and cargoes. These observations indicate that KLP-7-mediated depolymerization defines the microtubule dynamics conducive to the specific enrichment of AIS components in dendrites. This further compartmentalizes dendritic and axonal microtubules, motors, and cargoes, thereby influencing neuronal polarity.
神经元的极化特性取决于其微管动力学以及由微管稳定和不稳定因素所决定的方向。不稳定因素在神经元极性形成和维持过程中的作用尚不清楚。我们利用秀丽隐杆线虫中的PVD神经元,研究了驱动蛋白13家族的微管解聚马达KLP-7在轴突-树突区室化中的功能。KLP-7缺失导致轴突蛋白(包括RAB-3、SAD-1及其马达UNC-104)错误定位于树突。通过KLP-7的细胞自主表达或秋水仙碱处理可挽救这种情况,这表明KLP-7依赖性微管解聚参与其中。KLP-7的高迁移率与树突中微管动力学增加相关,这限制了轴突起始段(AIS)的一个组成成分UNC-44在这些过程中的富集。由于KLP-7缺失,UNC-44在树突中的异位富集可能会将轴突运输重定向到包括正端向外微管、轴突马达和货物的树突中。这些观察结果表明,KLP-7介导的解聚定义了有利于AIS成分在树突中特异性富集的微管动力学。这进一步分隔了树突和轴突中的微管、马达和货物,从而影响神经元极性。