4.7 Article

TRIM46 Organizes Microtubule Fasciculation in the Axon Initial Segment

期刊

JOURNAL OF NEUROSCIENCE
卷 39, 期 25, 页码 4864-4873

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.3105-18.2019

关键词

axon initial segment (AIS); correlative light and electron microscopy (CLEM); microtubule; TRIM46

资金

  1. Netherlands Organization for Scientific Research (NWO)
  2. European Research Council (ERC)

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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.

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