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Interplay between phosphorylation and palmitoylation mediates plasma membrane targeting and sorting of GAP43

机译:磷酸化和棕榈酰化之间的相互作用介导质膜靶向和GAP43的分选

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Phosphorylation and lipidation provide posttranslational mechanisms that contribute to the distribution of cytosolic proteins in growing nerve cells. The growth-associated protein GAP43 is susceptible to both phosphorylation and S-palmitoylation and is enriched in the tips of extending neurites. However, how phosphorylation and lipidation interplay to mediate sorting of GAP43 is unclear. Using a combination of biochemical, genetic, and imaging approaches, we show that palmitoylation is required for membrane association and that phosphorylation at Ser-41 directs palmitoylated GAP43 to the plasma membrane. Plasma membrane association decreased the diffusion constant fourfold in neuritic shafts. Sorting to the neuritic tip required palmitoylation and active transport and was increased by phosphorylation-mediated plasma membrane interaction. Vesicle tracking revealed transient association of a fraction of GAP43 with exocytic vesicles and motion at a fast axonal transport rate. Simulations confirmed that a combination of diffusion, dynamic plasma membrane interaction and active transport of a small fraction of GAP43 suffices for efficient sorting to growth cones. Our data demonstrate a complex interplay between phosphorylation and lipidation in mediating the localization of GAP43 in neuronal cells. Palmitoylation tags GAP43 for global sorting by piggybacking on exocytic vesicles, whereas phosphorylation locally regulates protein mobility and plasma membrane targeting of palmitoylated GAP43.
机译:磷酸化和脂化提供了翻译后机制,有助于细胞质蛋白在生长的神经细胞中分布。与生长相关的蛋白GAP43对磷酸化和S-棕榈酰化均敏感,并且在延伸神经突的尖端富集。然而,尚不清楚磷酸化和脂质化如何相互作用以介导GAP43的分选。使用生化,遗传和成像方法的组合,我们表明棕榈酰化是膜缔合所必需的,并且在Ser-41处的磷酸化将棕榈酰化的GAP43导向质膜。质膜结合使神经元轴的扩散常数降低了四倍。排序到神经尖需要棕榈酰化和主动转运,并通过磷酸化介导的质膜相互作用而增加。囊泡追踪揭示了GAP43的一部分与囊泡和运动的瞬时关联,其轴突运输速度很快。模拟证实,扩散,动态质膜相互作用和小部分GAP43的主动转运的结合足以有效地分类至生长锥。我们的数据表明,在介导神经元细胞中GAP43的定位中,磷酸化和脂化之间存在复杂的相互作用。棕榈酰化通过在囊外囊泡上piggy带将GAP43标记为全局分选,而磷酸化则局部调节蛋白质的迁移率和棕榈酰化GAP43的质膜靶向。

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