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Coupling of microtubule motors with AP-3 generated organelles in axons by NEEP21 family member calcyon

机译:Neep21家族成员康融公中AP-3产生的微管电机与AP-3产生的细胞器的偶联

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摘要

Transport of late endosomes and lysosome-related organelles (LE/LROs) in axons is essential for supplying synaptic cargoes and for removing damaged macromolecules. Defects in this system are implicated in a range of human neurodegenerative and neurodevelopmental disorders. The findings reported here identify a novel mechanism regulating LE/LRO transport based on the coordinated coupling of microtubule motors and vesicle coat proteins to the neuron-enriched, transmembrane protein calcyon (Caly). We found that the cytoplasmic C-terminus of Caly pulled down proteins involved in microtubule-dependent transport (DIC, KIF5A, p150Glued, Lis1) and organelle biogenesis (AP-1 and AP-3) from the brain. In addition, RNA interference-mediated knockdown of Caly increased the percentage of static LE/LROs labeled by LysoTracker in cultured dorsal root ganglion axons. In contrast, overexpression of Caly stimulated movement of organelles positive for LysoTracker or the AP-3 cargo GFP-P14KIlot. However, a Caly mutant (ATEA) that does not bind AP-3 was unable to pull down motor proteins from brain, and expression of the ATEA mutant failed to increase either LE/LRO flux or levels of associated dynein. Taken together, these data support the hypothesis that Caly is a multifunctional scaffolding protein that regulates axonal transport of LE/LROs by coordinately interacting with motor and vesicle coat proteins.
机译:轴突中的晚期内体和溶酶体相关的细胞器(LE / LRO)的运输对于供应突触货物和去除受损的大分子是必不可少的。该系统中的缺陷涉及一系列人类神经变性和神经发育障碍。此处报告的调查结果确定了一种新的机制,基于微管电机和囊泡外壳蛋白质的协调偶联对神经元富含跨膜蛋白钙盐(Caly)的协调偶联进行调节LE / LRO运输。我们发现,Caly的细胞质C-末端从大脑中拉下依赖于微管依赖性转运(DIC,KIF5A,P150格,LIS1)和细胞器生物发生(AP-1和AP-3)的蛋白质。此外,RNA干扰介导的Caly敲低的敲低增加了LysoTracker在培养的背根神经节轴突中标记的静态LE / LRO的百分比。相比之下,赖氨酸阳性的过度表达刺激的液体细胞器对LysoTracker或AP-3货物GFP-P14KILOT的运动。然而,没有结合AP-3的Caly突变体(ATEA)无法从脑中拉下电机蛋白质,并且ATEA突变体的表达未能增加LE / LRO助焊剂或相关Dynein的水平。总之,这些数据支持假设,即Caly是一种多功能支架蛋白,通过与马达和囊泡外壳蛋白质相互作用来调节Le / Lros的轴突传输。

著录项

  • 来源
    《Molecular biology of the cell》 |2018年第17期|共14页
  • 作者单位

    Augusta Univ Med Coll Georgia Dept Pharmacol &

    Toxicol Augusta GA 30912 USA;

    Univ South Carolina Dept Biol Sci Columbia SC 29208 USA;

    Augusta Univ Med Coll Georgia Dept Pharmacol &

    Toxicol Augusta GA 30912 USA;

    Univ South Carolina Dept Biol Sci Columbia SC 29208 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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