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首页> 外文期刊>Molecular biology of the cell >Roles of BLOC-1 and Adaptor Protein-3 Complexes in Cargo Sorting to Synaptic Vesicles
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Roles of BLOC-1 and Adaptor Protein-3 Complexes in Cargo Sorting to Synaptic Vesicles

机译:BLOC-1和衔接蛋白3复合物在货物分类到突触小泡中的作用。

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摘要

Neuronal lysosomes and their biogenesis mechanisms are primarily thought to clear metabolites and proteins whose abnormal accumulation leads to neurodegenerative disease pathology. However, it remains unknown whether lysosomal sorting mechanisms regulate the levels of membrane proteins within synaptic vesicles. Using high-resolution deconvolution microscopy, we identified early endosomal compartments where both selected synaptic vesicle and lysosomal membrane proteins coexist with the a daptor p rotein complex 3 (AP-3) in neuronal cells. From these early endosomes, both synaptic vesicle membrane proteins and characteristic AP-3 lysosomal cargoes can be similarly sorted to brain synaptic vesicles and PC12 synaptic-like microvesicles. Mouse knockouts for two Hermansky–Pudlak complexes involved in lysosomal biogenesis from early endosomes, the ubiquitous isoform of AP-3 ( Ap3b1 ?/?) and muted , defective in the b iogenesis of l ysosome-related o rganelles c omplex 1 (BLOC-1), increased the content of characteristic synaptic vesicle proteins and known AP-3 lysosomal proteins in isolated synaptic vesicle fractions. These phenotypes contrast with those of the mouse knockout for the neuronal AP-3 isoform involved in synaptic vesicle biogenesis ( Ap3b2 ?/?), in which the content of select proteins was reduced in synaptic vesicles. Our results demonstrate that lysosomal and lysosome-related organelle biogenesis mechanisms regulate steady-state synaptic vesicle protein composition from shared early endosomes.
机译:主要认为神经元溶酶体及其生物发生机理是清除代谢物和蛋白质,这些代谢物和蛋白质的异常积累会导致神经退行性疾病。然而,尚不清楚溶酶体分选机制是否调节突触小泡内的膜蛋白水平。使用高分辨率的反卷积显微镜,我们确定了早期的内体区室,其中选定的突触囊泡和溶酶体膜蛋白与神经元细胞中的蛋白水解蛋白3(AP-3)共存。从这些早期的内体,突触小泡膜蛋白和特征性AP-3溶酶体货物都可以类似地分类为脑突触小泡和PC12突触样微泡。敲除来自早期内体的溶酶体生物发生的两种Hermansky-Pudlak复合物的小鼠基因敲除,即AP-3的普遍存在的同工型(Ap3b1 ?/?),并且在与溶酶体相关的生物的发生中存在缺陷rganelles复合体1(BLOC-1),增加了分离的突触小泡组分中特征性突触小泡蛋白和已知的AP-3溶酶体蛋白的含量。这些表型与涉及突触小泡生物发生的神经元AP-3亚型(Ap3b2 ?/?)的小鼠基因敲除相反,其中突触小泡中选择蛋白的含量降低。我们的研究结果表明,溶酶体和溶酶体相关的细胞器生物发生机制调节共享的早期内体中的稳态突触小泡蛋白组成。

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