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蛋白质-脂质相互作用在细胞粘附分子上游驱动突触前组装。

Protein-lipid interactions drive presynaptic assembly upstream of cell adhesion molecules.

作者信息

Frankel Elisa B, Tiroumalechetty Araven, Henry Parise S, Su Zhaoqian, Wu Yinghao, Kurshan Peri T

机构信息

Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461.

Data Science Institute, Vanderbilt University, 1001 19th Ave S, Nashville, TN, 37212.

出版信息

bioRxiv. 2023 Nov 17:2023.11.17.567618. doi: 10.1101/2023.11.17.567618.

Abstract

Textbook models of synaptogenesis position cell adhesion molecules such as neurexin as initiators of synapse assembly. Here we discover a mechanism for presynaptic assembly that occurs prior to neurexin recruitment, while supporting a role for neurexin in synapse maintenance. We find that the cytosolic active zone scaffold SYD-1 interacts with membrane phospholipids to promote active zone protein clustering at the plasma membrane, and subsequently recruits neurexin to stabilize those clusters. Employing molecular dynamics simulations to model intrinsic interactions between SYD-1 and lipid bilayers followed by tests of these predictions, we find that PIP-interacting residues in SYD-1's C2 and PDZ domains are redundantly necessary for proper active zone assembly. Finally, we propose that the uncharacterized yet evolutionarily conserved short γ isoform of neurexin represents a minimal neurexin sequence that can stabilize previously assembled presynaptic clusters, potentially a core function of this critical protein.

摘要

突触发生的教科书模型将细胞粘附分子(如神经纤连蛋白)定位为突触组装的启动因子。在此,我们发现了一种在神经纤连蛋白招募之前发生的突触前组装机制,同时也支持神经纤连蛋白在突触维持中的作用。我们发现,胞质活性区支架蛋白SYD-1与膜磷脂相互作用,以促进活性区蛋白在质膜上的聚集,并随后招募神经纤连蛋白来稳定这些聚集体。通过分子动力学模拟来模拟SYD-1与脂质双层之间的内在相互作用,随后对这些预测进行测试,我们发现SYD-1的C2和PDZ结构域中与磷脂酰肌醇相互作用的残基对于正确的活性区组装是冗余必需的。最后,我们提出,神经纤连蛋白尚未被表征但在进化上保守的短γ异构体代表了一种最小的神经纤连蛋白序列,它可以稳定先前组装的突触前聚集体,这可能是这种关键蛋白的核心功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/165b/10680821/34f7eee584d8/nihpp-2023.11.17.567618v1-f0001.jpg

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