首页> 美国卫生研究院文献>The Journal of Neuroscience >Drosophila Syd-1 Liprin-α and Protein Phosphatase 2A B′ Subunit Wrd Function in a Linear Pathway to Prevent Ectopic Accumulation of Synaptic Materials in Distal Axons
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Drosophila Syd-1 Liprin-α and Protein Phosphatase 2A B′ Subunit Wrd Function in a Linear Pathway to Prevent Ectopic Accumulation of Synaptic Materials in Distal Axons

机译:果蝇Syd-1脂蛋白-α和蛋白磷酸酶2A B亚基Wrd功能的线性途径以防止远端轴突突触材料的异位积累。

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摘要

During synaptic development, presynaptic differentiation occurs as an intrinsic property of axons to form specialized areas of plasma membrane [active zones (AZs)] that regulate exocytosis and endocytosis of synaptic vesicles. Genetic and biochemical studies in vertebrate and invertebrate model systems have identified a number of proteins involved in AZ assembly. However, elucidating the molecular events of AZ assembly in a spatiotemporal manner remains a challenge. Syd-1 (synapse defective-1) and Liprin-α have been identified as two master organizers of AZ assembly. Genetic and imaging analyses in invertebrates show that Syd-1 works upstream of Liprin-α in synaptic assembly through undefined mechanisms. To understand molecular pathways downstream of Liprin-α, we performed a proteomic screen of Liprin-α-interacting proteins in Drosophila brains. We identify Drosophila protein phosphatase 2A (PP2A) regulatory subunit B′ [Wrd (Well Rounded)] as a Liprin-α-interacting protein, and we demonstrate that it mediates the interaction of Liprin-α with PP2A holoenzyme and the Liprin-α-dependent synaptic localization of PP2A. Interestingly, loss of function in syd-1, liprin-α, or wrd shares a common defect in which a portion of synaptic vesicles, dense-core vesicles, and presynaptic cytomatrix proteins ectopically accumulate at the distal, but not proximal, region of motoneuron axons. Strong genetic data show that a linear syd-1/liprin-α/wrd pathway in the motoneuron antagonizes glycogen synthase kinase-3β kinase activity to prevent the ectopic accumulation of synaptic materials. Furthermore, we provide data suggesting that the syd-1/liprin-α/wrd pathway stabilizes AZ specification at the nerve terminal and that such a novel function is independent of the roles of syd-1/liprin-α in regulating the morphology of the T-bar structural protein BRP (Bruchpilot).
机译:在突触发展过程中,突触前分化是轴突的固有特性,形成质膜的特殊区域[活性区(AZ)],调节突触小泡的胞吐作用和内吞作用。在脊椎动物和无脊椎动物模型系统中的遗传和生化研究已经确定了许多与AZ组装有关的蛋白质。然而,以时空方式阐明AZ组装的分子事件仍然是一个挑战。 Syd-1(突触缺陷1)和Liprin-α被确定为AZ装配的两个主要组织者。对无脊椎动物的遗传和成像分析表明,Syd-1通过不确定的机制在突触组装中的Liprin-α上游起作用。为了了解脂蛋白-α下游的分子途径,我们在果蝇大脑中进行了脂蛋白-α相互作用蛋白的蛋白质组学筛选。我们确定果蝇蛋白磷酸酶2A(PP2A)调节亚基B'[Wrd(圆整)]为脂蛋白-α相互作用蛋白,并且我们证明它介导了脂蛋白-α与PP2A全酶和脂蛋白-α-的相互作用。 PP2A的依赖突触定位。有趣的是,syd​​-1,liprin-α或wrd的功能丧失共有一个常见缺陷,其中一部分突触小泡,致密核心小泡和突触前细胞基质蛋白异位积聚在运动神经元的远端区域,而不是近端区域轴突。强大的遗传数据表明,运动神经元中的线性syd-1 /liprin-α/ wrd途径拮抗糖原合酶激酶3β激酶活性,以防止异位积累突触物质。此外,我们提供的数据表明,syd-1 /liprin-α/ wrd途径可稳定神经末梢的AZ规范,并且这种新功能独立于syd-1 /liprin-α在调节神经突触形态中的作用。 T型杆结构蛋白BRP(Bruchpilot)。

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