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TRIM46 组织轴突起始段中的微管束。

TRIM46 Organizes Microtubule Fasciculation in the Axon Initial Segment.

机构信息

Cell Biology, Department of Biology, Faculty of Science, and.

Cryo-Electron Microscopy, Department of Chemistry, Faculty of Science, Utrecht University, 3584 Utrecht, the Netherlands.

出版信息

J Neurosci. 2019 Jun 19;39(25):4864-4873. doi: 10.1523/JNEUROSCI.3105-18.2019. Epub 2019 Apr 9.

Abstract

Selective cargo transport into axons and dendrites over the microtubule network is essential for neuron polarization. The axon initial segment (AIS) separates the axon from the somatodendritic compartment and controls the microtubule-dependent transport into the axon. Interestingly, the AIS has a characteristic microtubule organization; it contains bundles of closely spaced microtubules with electron dense cross-bridges, referred to as microtubule fascicles. The microtubule binding protein TRIM46 localizes to the AIS and when overexpressed in non-neuronal cells forms microtubule arrays that closely resemble AIS fascicles in neurons. However, the precise role of TRIM46 in microtubule fasciculation in neurons has not been studied. Here we developed a novel correlative light and electron microscopy approach to study AIS microtubule organization. We show that in cultured rat hippocampal neurons of both sexes, TRIM46 levels steadily increase at the AIS during early neuronal differentiation and at the same time closely spaced microtubules form, whereas the fasciculated microtubules appear at later developmental stages. Moreover, we localized TRIM46 to the electron dense cross-bridges and show that depletion of TRIM46 causes loss of cross-bridges and increased microtubule spacing. These data indicate that TRIM46 has an essential role in organizing microtubule fascicles in the AIS. The axon initial segment (AIS) is a specialized region at the proximal axon where the action potential is initiated. In addition the AIS separates the axon from the somatodendritic compartment, where it controls protein transport to establish and maintain neuron polarity. Cargo vesicles destined for the axon recognize specialized microtubule tracks that enter the AIS. Interestingly the microtubules entering the AIS form crosslinked bundles, called microtubule fascicules. Recently we found that the microtubule-binding protein TRIM46 localizes to the AIS, where it may organize the AIS microtubules. In the present study we developed a novel correlative light and electron microscopy approach to study the AIS microtubules during neuron development and identified an essential role for TRIM46 in microtubule fasciculation.

摘要

选择性货物运输进入轴突和树突的微管网络对神经元极化至关重要。轴突起始段(AIS)将轴突与体树突隔室分开,并控制微管依赖性运输进入轴突。有趣的是,AIS 具有特征性的微管组织;它包含紧密间隔的微管束,带有电子致密的交联桥,称为微管束。微管结合蛋白 TRIM46 定位于 AIS,当在非神经元细胞中过表达时,形成的微管阵列与神经元中的 AIS 束非常相似。然而,TRIM46 在神经元中微管束形成的确切作用尚未研究。在这里,我们开发了一种新的相关光和电子显微镜方法来研究 AIS 微管组织。我们表明,在培养的雄性和雌性大鼠海马神经元中,TRIM46 水平在早期神经元分化期间在 AIS 处稳定增加,同时形成紧密间隔的微管,而束状微管出现在发育的后期。此外,我们将 TRIM46 定位到电子致密的交联桥上,并表明 TRIM46 的耗竭会导致交联桥丢失和微管间距增加。这些数据表明,TRIM46 在 AIS 中微管束的组织中具有重要作用。轴突起始段(AIS)是近端轴突的一个特化区域,其中动作电位开始。此外,AIS 将轴突与体树突隔室分开,在那里它控制蛋白质运输以建立和维持神经元极性。运往轴突的货物囊泡识别进入 AIS 的专门微管轨道。有趣的是,进入 AIS 的微管形成交联束,称为微管束。最近,我们发现微管结合蛋白 TRIM46 定位于 AIS,在那里它可能组织 AIS 微管。在本研究中,我们开发了一种新的相关光和电子显微镜方法来研究神经元发育过程中的 AIS 微管,并确定了 TRIM46 在微管束形成中的重要作用。

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