Axonal transport is key to neuronal function. Efficient transport requires specific motor-cargo association in the soma, yet the mechanisms regulating this early step remain poorly understood. We found that EBP-1, the C. elegans ortholog of the canonical-microtubule-end-binding protein EB1, promotes the specific association between kinesin-3/KIF1A/UNC-104 and dense core vesicles (DCVs) prior to their axonal delivery. Using single-neuron, in vivo labeling of endogenous cargo and EBs, we observed reduced axonal abundance and reduced secretion of DCV cargo, but not other KIF1A/UNC-104 cargoes, in ebp-1 mutants. This reduction could be traced back to fewer exit events from the cell body, where EBP-1 colocalized with the DCV sorting machinery at the trans Golgi, suggesting that this is the site of EBP-1 function. EBP-1 calponin homology (CH) domain was required for directing microtubule growth on the Golgi, and mammalian EB1 interacted with KIF1A in an EBH-domain-dependent manner. Loss- and gain-of-function experiments suggest a model in which both kinesin-3 binding and guidance of microtubule growth at the trans Golgi by EBP-1 promote motor-cargo association at sites of DCV biogenesis. In support of this model, tethering either EBP-1 or a kinesin-3/KIF1A/UNC-104-interacting domain from an unrelated protein to the Golgi restored the axonal abundance of DCV proteins in ebp-1 mutants. These results uncover an unexpected role for a microtubule-associated protein and provide insights into how specific kinesin-3 cargo is delivered to the axon.
End-binding protein 1 promotes specific motor-cargo association in the cell body prior to axonal delivery of dense core vesicles.
末端结合蛋白 1 在致密核心囊泡通过轴突运输之前,促进细胞体内特定的马达蛋白与货物蛋白的结合
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作者:Park Junhyun, Xie Yi, Miller Kenneth G, De Camilli Pietro, Yogev Shaul
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2023 | 起止号: | 2023 Sep 25; 33(18):3851-3864 |
| doi: | 10.1016/j.cub.2023.07.052 | 研究方向: | 细胞生物学 |
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