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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Phosphorylation of Synaptojanin Differentially Regulates Endocytosis of Functionally Distinct Synaptic Vesicle Pools
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Phosphorylation of Synaptojanin Differentially Regulates Endocytosis of Functionally Distinct Synaptic Vesicle Pools

机译:Synaptojanin的磷酸化差异调节功能性不同突触囊泡池的内吞作用

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The rapid replenishment of synaptic vesicles through endocytosis is crucial for sustaining synaptic transmission during intense neuronal activity. Synaptojanin (Synj), a phosphoinositide phosphatase, is known to play an important role in vesicle recycling by promoting the uncoating of clathrin following synaptic vesicle uptake. Synj has been shown to be a substrate of the minibrain (Mnb) kinase, a fly homolog of the dual-specificity tyrosine phosphorylation-regulated kinase 1A (DYRK1A); however, the functional impacts of Synj phosphorylation by Mnb are not well understood. Here we identify that Mnb phosphorylates Synj at S1029 in Drosophila. We find that phosphorylation of Synj at S1029 enhances Synj phosphatase activity, alters interaction between Synj and endophilin, and promotes efficient endocytosis of the active cycling vesicle pool (also referred to as exo-endo cycling pool) at the expense of reserve pool vesicle endocytosis. Dephosphorylated Synj, on the other hand, is deficient in the endocytosis of the active recycling pool vesicles but maintains reserve pool vesicle endocytosis to restore total vesicle pool size and sustain synaptic transmission. Together, our findings reveal a novel role for Synj in modulating reserve pool vesicle endocytosis and further indicate that dynamic phosphorylation and dephosphorylation of Synj differentially maintain endocytosis of distinct functional synaptic vesicle pools.
机译:通过内吞作用的突触囊泡的快速补充对于维持强烈神经元活动期间的突触传播至关重要。已知磷酸阳性磷脂酶,一种磷酸阳性磷酸磷酸酶,通过促进突触囊泡摄取后的克拉辛蛋白的未被涂覆来发挥重要作用。 Synj已被证明是致法型(MnB)激酶的底物,双特异性酪氨酸磷酸化调节激酶1a(Dyrk1a)的飞行同源物;然而,MNB的Synj磷酸化的功能影响尚不清楚。在这里,我们将MnB磷酸化Synj鉴定在果蝇的S1029中。我们发现S1029的Synj的磷酸化增强了Synj磷酸酶活性,改变了Synj和内科蛋白之间的相互作用,并以储备池囊泡内吞作用的代价促进活性循环囊泡池(也称为EXO-Endo循环池)的有效内吞作用。另一方面,去磷酸化的Synj缺乏活性回收池囊泡的内吞作用,但维持储备池囊泡内吞作用,以恢复总囊泡池大小并维持突触传递。我们的研究结果在一起揭示了在调节储备池中囊泡症的Synj的新颖作用,进一步表明Synj的动态磷酸化和脱磷酸化对不同功能突触囊泡池的差异保持内吞作用。

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