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Maturational Conversion of Dendritic Early Endosomes and Their Roles in L1-Mediated Axon Growth

机译:树突状早期内体的成熟转化及其在L1介导的轴突生长中的作用

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摘要

The function of endosomes is intricately linked to cellular function in all cell types, including neurons. Intriguingly, neurons express cell type-specific proteins that localize to endosomes, but little is known about how these neuronal proteins interface with canonical endosomes and ubiquitously expressed endosomal components, such as EEA1 (Early Endosomal Antigen 1). NEEP21 (Neuronal Early Endosomal Protein 21 kDa) localizes to somatodendritic endosomes, and downregulation of NEEP21 perturbs the correct trafficking of multiple receptors, including glutamate receptors (GluA2) during LTP and amyloidogenic processing of βAPP. Our own work implicated NEEP21 in correct trafficking of the axonal cell adhesion molecule L1euron–glia cell adhesion molecule (NgCAM). NEEP21 dynamically localizes with EEA1-positive early endosomes but is also found in EEA1-negative endosomes. Live imaging reveals that NEEP21-positive, EEA1-negative endosomes arise as a consequence of maturational conversion of EEA1/NEEP21 double-positive endosomes. Interfering with EEA1 function causes missorting of L1/NgCAM, axon outgrowth defects on the L1 substrate, and disturbance of NEEP21 localization. Last, we uncover evidence that functional interference with NEEP21 reduces axon and dendrite growth of primary rat hippocampal neurons on L1 substrate but not on N-cadherin substrate, thus implicating endosomal trafficking through somatodendritic early endosomes in L1-mediated axon growth.
机译:内体的功能与包括神经元在内的所有细胞类型中的细胞功能错综复杂地联系在一起。有趣的是,神经元表达定位于内体的细胞类型特异性蛋白,但对于这些神经元蛋白如何与规范内体和无处不在的内体成分(例如EEA1(早期内体抗原1))相互作用的了解甚少。 NEEP21(21kDa神经元早期内体蛋白)定位于躯体树突状内体,NEEP21的下调扰动了LTP和βAPP的淀粉样蛋白加工过程中多种受体的正确运输,包括谷氨酸受体(GluA2)。我们自己的工作牵涉NEEP21正确运输轴突细胞粘附分子L1 /神经元-胶质细胞粘附分子(NgCAM)。 NEEP21动态定位于EEA1阳性的早期内体,但也见于EEA1阴性的内体。实时成像显示,NEEP21阳性,EEA1阴性的内体是EEA1 / NEEP21双阳性内体成熟转化的结果。干扰EEA1功能会导致L1 / NgCAM缺失,L1底物上的轴突生长缺陷以及对NEEP21定位的干扰。最后,我们发现有证据表明,对NEEP21的功能性干扰会降低L1底物上的原代大鼠海马神经元的轴突和树突生长,而不是N-钙粘蛋白底物上的轴突和树突生长,从而暗示通过体细胞树突状早期内体在L1介导的轴突生长中进行内体运输。

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