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选择性内体消融揭示胆碱能神经元中新型胆碱共转运体隔离室。

A novel choline cotransporter sequestration compartment in cholinergic neurons revealed by selective endosomal ablation.

机构信息

Department of Biological Sciences, Tennessee State University, Nashville, TN, USA.

出版信息

J Neurochem. 2010 Mar;112(5):1295-304. doi: 10.1111/j.1471-4159.2009.06543.x. Epub 2009 Dec 14.

Abstract

The sodium-dependent, high affinity choline transporter - choline cotransporter - (ChCoT, aka: cho-1, CHT1, CHT) undergoes constitutive and regulated trafficking between the plasma membrane and cytoplasmic compartments. The pathways and regulatory mechanisms of this trafficking are not well understood. We report herein studies involving selective endosomal ablation to further our understanding of the trafficking of the ChCoT. Selective ablation of early sorting and recycling endosomes resulted in a decrease of approximately 75% of [3H]choline uptake and approximately 70% of [3H]hemicholinium-3 binding. Western blot analysis showed that ablation produced a similar decrease in ChCoTs in the plasma membrane subcellular fraction. The time frame for this loss was approximately 2 h which has been shown to be the constitutive cycling time for ChCoTs in this tissue. Ablation appears to be dependent on the intracellular cycling of transferrin-conjugated horseradish peroxidase and the selective deposition of transferrin-conjugated horseradish peroxidase in early endosomes, both sorting and recycling. Ablated brain slices retained their capacity to recruit via regulated trafficking ChCoTs to the plasma membrane. This recruitment of ChCoTs suggests that the recruitable compartment is distinct from the early endosomes. It will be necessary to do further studies to identify the novel sequestration compartment supportive of the ChCoT regulated trafficking.

摘要

钠离子依赖型高亲和力胆碱转运体 - 胆碱共转运体 - (ChCoT,又名:cho-1、CHT1、CHT) 在质膜和细胞质隔室之间进行组成型和调节性的运输。这种运输的途径和调节机制尚不清楚。我们在此报告了涉及选择性内体消融的研究,以进一步了解 ChCoT 的运输。早期分拣和再循环内体的选择性消融导致 [3H]胆碱摄取减少约 75%,[3H] hemicholinium-3 结合减少约 70%。Western blot 分析显示,消融在质膜亚细胞部分产生了类似的 ChCoTs 减少。这种损失的时间框架约为 2 小时,这已经被证明是该组织中 ChCoTs 的组成性循环时间。消融似乎依赖于转铁蛋白结合辣根过氧化物酶的细胞内循环,以及转铁蛋白结合辣根过氧化物酶在早期内体中的选择性沉积,包括分拣和再循环。消融的脑片保留了通过调节性运输将 ChCoTs 募集到质膜的能力。这种 ChCoTs 的募集表明可募集的隔室与早期内体不同。有必要进一步研究以确定支持 ChCoT 调节性运输的新型隔离隔室。

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