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首页> 外文期刊>Frontiers in Cellular Neuroscience >α-Synuclein Dimers Impair Vesicle Fission during Clathrin-Mediated Synaptic Vesicle Recycling
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α-Synuclein Dimers Impair Vesicle Fission during Clathrin-Mediated Synaptic Vesicle Recycling

机译:α-突触核蛋白二聚体削弱网格蛋白介导的突触囊泡回收过程中的囊泡裂变。

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α-Synuclein is a presynaptic protein that regulates synaptic vesicle (SV) trafficking. In Parkinson’s disease (PD) and several other neurodegenerative disorders, aberrant oligomerization and aggregation of α-synuclein lead to synaptic dysfunction and neurotoxicity. Despite evidence that α-synuclein oligomers are generated within neurons under physiological conditions, and that altering the balance of monomers and oligomers contributes to disease pathogenesis, how each molecular species of α-synuclein impacts SV trafficking is currently unknown. To address this, we have taken advantage of lamprey giant reticulospinal (RS) synapses, which are accessible to acute perturbations via axonal microinjection of recombinant proteins. We previously reported that acute introduction of monomeric α-synuclein inhibited SV recycling, including effects on the clathrin pathway. Here, we report the effects of α-synuclein dimers at synapses. Similar to monomeric α-synuclein, both recombinant α-synuclein dimers that were evaluated bound to small liposomes containing anionic lipids in vitro , but with reduced efficacy. When introduced to synapses, the α-synuclein dimers also induced SV recycling defects, which included a build up of clathrin-coated pits (CCPs) with constricted necks that were still attached to the plasma membrane, a phenotype indicative of a vesicle fission defect. Interestingly, both α-synuclein dimers induced longer necks on CCPs as well as complex, branching membrane tubules, which were distinct from the CCPs induced by a dynamin inhibitor, Dynasore. In contrast, monomeric α-synuclein induced a buildup of free clathrin-coated vesicles (CCVs), indicating an inhibition of clathrin-mediated endocytosis at a later stage during the clathrin uncoating process. Taken together, these data further support the conclusion that excess α-synuclein impairs SV recycling. The data additionally reveal that monomeric and dimeric α-synuclein produce distinct effects on clathrin-mediated endocytosis, predicting different molecular mechanisms. Understanding what these mechanisms are could help to further elucidate the normal functions of this protein, as well as the mechanisms underlying PD pathologies.
机译:α-突触核蛋白是一种突触前蛋白,可调节突触小泡(SV)的运输。在帕金森氏病(PD)和其他几种神经退行性疾病中,α-突触核蛋白的异常低聚和聚集会导致突触功能障碍和神经毒性。尽管有证据表明在生理条件下神经元内会生成α-突触核蛋白低聚物,并且改变单体和低聚物的平衡会导致疾病发病,但是目前尚不清楚α-突触核蛋白的每个分子种类如何影响SV转运。为了解决这个问题,我们利用了七lamp鳗巨网脉突触(RS)突触,可以通过轴突显微注射重组蛋白来进行急性扰动。我们先前曾报道过,单体α-突触核蛋白的急性引入抑制了SV的回收,包括对网格蛋白途径的影响。在这里,我们报道了突触中α-突触核蛋白二聚体的作用。与单体α-突触核蛋白相似,两种重组α-突触核蛋白二聚体均在体外与含有阴离子脂质的小脂质体结合,但功效降低。当被引入突触中时,α-突触核蛋白二聚体也诱导了SV循环缺陷,其中包括网格蛋白涂层的凹坑(CCP)的形成,该凹坑的颈部仍然附着在质膜上,该表型表明囊泡裂孔缺陷。有趣的是,两种α-突触核蛋白二聚体均能诱导CCP上较长的颈部以及复杂的分支膜小管,这与由动力抑制剂Dynasore诱导的CCP不同。相反,单体α-突触核蛋白诱导游离网格蛋白包被的囊泡(CCV)的积聚,表明在网格蛋白脱膜过程的后期抑制网格蛋白介导的内吞作用。综上所述,这些数据进一步支持了以下结论:过量的α-突触核蛋白会损害SV的回收。数据还表明,单体和二聚体α-突触核蛋白对网格蛋白介导的内吞作用产生不同的影响,预测了不同的分子机制。了解这些机制是什么可以帮助进一步阐明该蛋白的正常功能以及PD病理的潜在机制。

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