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动力蛋白激活蛋白复合物向微管正极的定向募集对于逆行轴突运输的有效起始是必需的。

Ordered recruitment of dynactin to the microtubule plus-end is required for efficient initiation of retrograde axonal transport.

机构信息

Department of Physiology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, Pennsylvania 19104-6085, USA.

出版信息

J Neurosci. 2013 Aug 7;33(32):13190-203. doi: 10.1523/JNEUROSCI.0935-13.2013.

Abstract

Long-range retrograde axonal transport in neurons is driven exclusively by the microtubule motor cytoplasmic dynein. The efficient initiation of dynein-mediated transport from the distal axon is critical for normal neuronal function, and neurodegenerative disease-associated mutations have been shown to specifically disrupt this process. Here, we examine the role of dynamic microtubules and microtubule plus-end binding proteins (+TIPs) in the initiation of dynein-mediated retrograde axonal transport using live-cell imaging of cargo motility in primary mouse dorsal root ganglion neurons. We show that end-binding (EB)-positive dynamic microtubules are enriched in the distal axon. The +TIPs EB1, EB3, and cytoplasmic linker protein-170 (CLIP-170) interact with these dynamic microtubules, recruiting the dynein activator dynactin in an ordered pathway, leading to the initiation of retrograde transport by the motor dynein. Once transport has initiated, however, neither the EBs nor CLIP-170 are required to maintain transport flux along the mid-axon. In contrast, the +TIP Lis1 activates transport through a distinct mechanism and is required to maintain processive organelle transport along both the distal and mid-axon. Further, we show that the EB/CLIP-170/dynactin-dependent mechanism is required for the efficient initiation of transport from the distal axon for multiple distinct cargos, including mitochondria, Rab5-positive early endosomes, late endosomes/lysosomes, and TrkA-, TrkB-, and APP-positive organelles. Our observations indicate that there is an essential role for +TIPs in the regulation of retrograde transport initiation in the neuron.

摘要

神经元中的长程逆行轴突运输完全由微管动力细胞质动力蛋白驱动。从远端轴突有效起始动力蛋白介导的运输对于正常神经元功能至关重要,并且已经表明神经退行性疾病相关突变特异性破坏了这一过程。在这里,我们使用原代小鼠背根神经节神经元中货物运动的活细胞成像,检查动态微管和微管末端结合蛋白(+TIPs)在动力蛋白介导的逆行轴突运输起始中的作用。我们表明,末端结合(EB)阳性动态微管在远端轴突中富集。+TIPs EB1、EB3 和细胞质接头蛋白-170(CLIP-170)与这些动态微管相互作用,以有序途径募集动力蛋白激活因子 dynactin,从而引发马达动力蛋白的逆行运输。然而,一旦运输开始,EB 或 CLIP-170 都不需要维持中轴突上的运输通量。相比之下,+TIP Lis1 通过独特的机制激活运输,并且需要维持细胞器在远端和中轴突上的连续运输。此外,我们表明,EB/CLIP-170/dynactin 依赖性机制对于从多个不同货物(包括线粒体、Rab5 阳性早期内体、晚期内体/溶酶体以及 TrkA、TrkB 和 APP 阳性细胞器)的远端轴突有效起始运输是必需的。我们的观察表明,+TIPs 在神经元中逆行运输起始的调节中起重要作用。

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