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Nicotine exposure and neuronal activity regulate Golgi membrane dispersal and distribution

biorxiv. 2020; 
Anitha P. Govind,  Okunola Jeyifous,  Theron A. Russell,  Lee O. Vaasjo,  Zola Yi,  Aubrey V. Weigel,  Luke Newell,  Jessica L. Koranda,  Karanveer Singh,  Fernando Valbuena,  Benjamin S. Glick,  Jogeshwar Mukherjee,  Jennifer Lippincott-Schwartz,  Xiaoxi Zhuang,  William N. Green
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摘要

How nicotine exposure produces long-lasting changes that remodel neural circuits with addiction is unknown. Here, we report that long-term nicotine exposure alters the trafficking of α4β2-type nicotinic acetylcholine receptors (α4β2Rs) by dispersing and redistributing the Golgi apparatus. In cultured neurons, dispersed Golgi membranes were distributed throughout somata, dendrites and axons. Small, mobile vesicles in dendrites and axons lacked standard Golgi markers and were identified by other Golgi enzymes that modify glycans. Nicotine exposure increased levels of dispersed Golgi membranes, which required α4β2R expression. Similar nicotine-induced changes occurred in vivo at dopaminergic neurons at mouse... More

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