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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Pre-synaptic defects of NPC1-deficient hippocampal neurons are not directly related to plasma membrane cholesterol.
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Pre-synaptic defects of NPC1-deficient hippocampal neurons are not directly related to plasma membrane cholesterol.

机译:NPC1缺陷海马神经元的突触前缺陷与质膜胆固醇没有直接关系。

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Imbalances in brain cholesterol homeostasis have been observed in several neurodegenerative diseases. In Niemann-Pick Type C (NPC) disease, mutations in NPC1 or NPC2 lead to endosomal cholesterol accumulation, neuronal dysfunction and death. Cholesterol in synaptic plasma membranes influences membrane fluidity, curvature, and protein function, and its depletion may adversely affect synaptic vesicle cycling. We have investigated pre-synaptic function in primary hippocampal neurons with altered cholesterol distribution because of NPC1 deficiency or cyclodextrin treatment. In NPC1-deficient neurons grown in serum-free medium, plasma membrane cholesterol was reduced and total synaptic vesicle release during prolonged stimulation was attenuated. In NPC1-deficient neurons cultured in the presence of high-density lipoproteins, plasma membrane cholesterol markedly increased, but the defects in synaptic vesicle release in NPC1-deficient neurons were exacerbated. Treatment with 1 mM methyl-beta-cyclodextrin acutely depleted plasma membrane cholesterol in wild-type neurons to levels below those in NPC1 deficiency, but did not alter synaptic vesicle exo- or endocytosis. Defects only became apparent when higher methyl-beta-cyclodextrin concentrations were used. Our data indicate that synaptic vesicle release can tolerate some degree of plasma membrane cholesterol depletion and suggest that the pre-synaptic defects in NPC1-deficient neurons are not solely caused by a reduction of plasma membrane cholesterol.
机译:在几种神经退行性疾病中已观察到脑胆固醇稳态的失衡。在Niemann-Pick C型(NPC)疾病中,NPC1或NPC2的突变导致内体胆固醇蓄积,神经元功能障碍和死亡。突触质膜中的胆固醇会影响膜的流动性,曲率和蛋白质功能,其消耗可能会对突触小泡循环产生不利影响。我们已经调查了由于NPC1缺乏症或环糊精治疗而改变了胆固醇分布的原代海马神经元的突触前功能。在无血清培养基中生长的NPC1缺陷神经元中,质膜胆固醇降低,长时间刺激过程中总突触小泡释放减弱。在高密度脂蛋白存在下培养的NPC1缺陷神经元中,质膜胆固醇显着增加,但NPC1缺陷神经元中突触小泡释放的缺陷加剧。用1 mM甲基-β-环糊精治疗可以使野生型神经元的质膜胆固醇急剧减少至低于NPC1缺乏症的水平,但不会改变突触囊泡的胞外或内吞作用。当使用更高浓度的甲基-β-环糊精时,缺陷才变得明显。我们的数据表明突触小泡释放可以忍受一定程度的质膜胆固醇消耗,并表明NPC1缺乏神经元的突触前缺陷不仅是由质膜胆固醇降低引起的。

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