Impairments in protein glycosylation, including O-GalNAc-type glycosylation, are linked to severe developmental disorders with prominent neurological involvement. However, the role of this glycosylation pathway at a cellular level is not yet fully understood. Here, we report a comprehensive map of GalNAc-type O-glycoproteins (>800) and O-glycosites (>4000) from neuronal tissues and cell lines and identify abundant O-glycosites within major classes of proteins involved in neuroplasticity, including axon guidance, membrane remodeling, and regulated vesicular secretion. Applying the map, we demonstrate that the regulated secretory pathway constitutes highly O-glycosylated proteins including Chromogranin A, a key player in dense core granulogenesis, and that correct O-glycosylation is important for its multimerization. Concurrently, genetically engineered neuronal cell lines deficient in O-glycosylation exhibit altered capacity for storing neurotransmitter noradrenaline and present enlarged neurotransmitter-containing dense core granules. Collectively, this map provides the foundation for uncovering critical roles for O-glycosylation in regulating neuroplasticity and provides evidence that dense core granule content is regulated by this pathway. Subjects: Granin, glycosylation, glycosaminoglycans, dense core granules (DCG), perineuronal net (PNN), mucin, central nervous system (CNS), neuron, neuroplasticity, neurotransmitter.
Map of the neuronal O-glycoproteome reveals driver functions in the regulated secretory pathway.
神经元 O-糖蛋白组图谱揭示了调控分泌途径中的驱动功能
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作者:Madsen Thomas D, Topaktas Asli B, Dworkin Leo A, Hintze John, Hansen Lasse H, Nikpour Mahnaz, Lackman Jarkko J, Goth Christoffer K, Larson Göran, Shiplett Emily J, Edmondson Andrew C, Zhou Zhaolan, Miller Rebecca L, Joshi Hiren J, Vakhrushev Sergey Y, Schjoldager Katrine T
| 期刊: | Journal of Biological Chemistry | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 Jul;301(7):110313 |
| doi: | 10.1016/j.jbc.2025.110313 | 研究方向: | 神经科学 |
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