Ran GTPase regulates non-centrosomal microtubule nucleation and is transported by actin waves towards the neurite tip.
Huang, Y.-A.; Hsu, C.-H.; Chiu, H.-C.; Ho, C. T.; Lo, W.-L.; Hwang, E.
10.1101/684720 bioRxivShow abstract
Microtubule (MT) is the most abundant cytoskeleton in neurons and controls multiple facets of their development. While the organizing center of MTs in mitotic cells is typically located at the centrosome, MT nucleation in post-mitotic neurons switches to non-centrosomal sites. A handful of proteins and organelle have been shown to promote non-centrosomal MT formation in neurons, yet the regulation mechanism remains unknown. Here we demonstrate that the small GTPase Ran is a key regulator of non-centrosomal MT nucleation in neurons. The GTP-bound Ran (RanGTP) localizes to the neurite tips and around the soma. Using the RanGTP- and RanGDP-mimic mutants, we show that RanGTP promotes MT nucleation at the tip of the neurite. To demonstrate that RanGTP can promote MT nucleation in regions other than the neurite tip, an optogenetic tool called RanTRAP was constructed to enable light-induced local production of RanGTP in the neuronal cytoplasm. An increase of non-centrosomal MT nucleation can be observed by elevating the RanGTP level along the neurite using RanTRAP, establishing a new role for Ran in regulating neuronal MTs. Additionally, the mechanism of RanGTP enrichment at the neurite tip was examined. We discovered that actin waves drive the anterograde transport of RanGTP towards the neurite tip. Pharmacological disruption of actin waves abolishes the enrichment of RanGTP and reduces the non-centrosomal MT nucleation at the neurite tip. These observations provide a novel regulation mechanism of MTs and an indirect connection between the actin and MT cytoskeletons in neurons.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Nucleocytoplasmic transport rates are regulated by cellular processes that modulate GTP availability 95%
- Cell and tissue morphology determine actin-dependent nuclear migration mechanisms in neuroepithelia 95%
- Recruitment of the SNX17-Retriever recycling pathway regulates synaptic function and plasticity. 94%
Similar papers in this journal
- The non-mitotic role of HMMR in regulating the localization of TPX2 and the dynamics of microtubules in neurons 97%
- Teneurin-2 at the Synapse Construction Site is a Signpost for Cargo Unloading from Motor Proteins 96%
- Growth cone advance requires EB1 as revealed by genomic replacement with a light-sensitive variant 95%
Similar papers in this journal
- Tuba activates Cdc42 during neuronal polarization downstream of the small GTPase Rab8a 96%
- Antagonistic activities of Fmn2 and ADF regulate axonal F-actin patch dynamics and the initiation of collateral branching 96%
- Nestin selectively facilitates the phosphorylation of the Lissencephaly-linked protein doublecortin (DCX) by cdk5/p35 to regulate growth cone morphology and Sema3a sensitivity in developing neurons 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.