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突触囊泡蛋白和 ATG9A 在突触结合蛋白凝聚物中形成不同的囊泡相。

Synaptic vesicle proteins and ATG9A self-organize in distinct vesicle phases within synapsin condensates.

机构信息

Department of Neuroscience, Yale University School of Medicine, New Haven, CT, 06510, USA.

Department of Cell Biology, Yale University School of Medicine, New Haven, CT, 06510, USA.

出版信息

Nat Commun. 2023 Jan 28;14(1):455. doi: 10.1038/s41467-023-36081-3.

Abstract

Ectopic expression in fibroblasts of synapsin 1 and synaptophysin is sufficient to generate condensates of vesicles highly reminiscent of synaptic vesicle (SV) clusters and with liquid-like properties. Here we show that unlike synaptophysin, other major integral SV membrane proteins fail to form condensates with synapsin, but co-assemble into the clusters formed by synaptophysin and synapsin in this ectopic expression system. Another vesicle membrane protein, ATG9A, undergoes activity-dependent exo-endocytosis at synapses, raising questions about the relation of ATG9A traffic to the traffic of SVs. We find that both in fibroblasts and in nerve terminals ATG9A does not co-assemble into synaptophysin-positive vesicle condensates but localizes on a distinct class of vesicles that also assembles with synapsin but into a distinct phase. Our findings suggest that ATG9A undergoes differential sorting relative to SV proteins and also point to a dual role of synapsin in controlling clustering at synapses of SVs and ATG9A vesicles.

摘要

在成纤维细胞中异位表达突触结合蛋白 1 和突触小泡蛋白足以产生类似于突触小泡 (SV) 簇的囊泡凝聚物,并且具有液态特性。在这里,我们表明与突触小泡蛋白不同,其他主要的 SV 膜蛋白不能与突触结合蛋白形成凝聚物,但在这种异位表达系统中,它们可以与突触小泡蛋白和突触结合蛋白共同组装成簇。另一种囊泡膜蛋白 ATG9A 在突触处经历活性依赖的出胞-内吞作用,这引发了关于 ATG9A 运输与 SV 运输之间关系的问题。我们发现,无论是在成纤维细胞还是在神经末梢中,ATG9A 都不会共同组装到突触小泡蛋白阳性的囊泡凝聚物中,而是定位于与突触结合蛋白组装但处于不同相的一类特定囊泡上。我们的发现表明,ATG9A 相对于 SV 蛋白进行了差异分拣,并且还指出了突触结合蛋白在控制 SV 和 ATG9A 囊泡在突触处聚集的双重作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf57/9884207/374403decb53/41467_2023_36081_Fig1_HTML.jpg

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