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微管蛋白调控突触前 F-actin 的动态组装。

Piccolo regulates the dynamic assembly of presynaptic F-actin.

机构信息

Nancy Pritzker Laboratory, Department of Psychiatry and Behavioral Sciences, Stanford University, Palo Alto, California 94304-5485, USA.

出版信息

J Neurosci. 2011 Oct 5;31(40):14250-63. doi: 10.1523/JNEUROSCI.1835-11.2011.

Abstract

Filamentous (F)-actin is a known regulator of the synaptic vesicle (SV) cycle, with roles in SV mobilization, fusion, and endocytosis. However, the molecular pathways that regulate its dynamic assembly within presynaptic boutons remain unclear. In this study, we have used shRNA-mediated knockdown to demonstrate that Piccolo, a multidomain protein of the active zone cytomatrix, is a key regulator of presynaptic F-actin assembly. Boutons lacking Piccolo exhibit enhanced activity-dependent Synapsin1a dispersion and SV exocytosis, and reduced F-actin polymerization and CaMKII recruitment. These phenotypes are rescued by stabilizing F-actin filaments and mimicked by knocking down Profilin2, another regulator of presynaptic F-actin assembly. Importantly, we find that mice with a targeted deletion of exon 14 from the Pclo gene, reported to lack >95% of Piccolo, continue to express multiple Piccolo isoforms. Furthermore, neurons cultured from these mice exhibit no defects in presynaptic F-actin assembly due to the expression of these isoforms at presynaptic boutons. These data reveal that Piccolo regulates neurotransmitter release by facilitating activity-dependent F-actin assembly and the dynamic recruitment of key signaling molecules into presynaptic boutons, and highlight the need for new genetic models with which to study Piccolo loss of function.

摘要

丝状(F)肌动蛋白是已知的突触囊泡(SV)循环调节剂,在 SV 动员、融合和内吞作用中起作用。然而,调节其在突触前末梢内动态组装的分子途径仍不清楚。在这项研究中,我们使用 shRNA 介导的敲低证明了 Piccolo,一个活性区细胞基质的多功能蛋白,是突触前 F-actin 组装的关键调节因子。缺乏 Piccolo 的末梢表现出增强的活性依赖性 Synapsin1a 弥散和 SV 胞吐作用,以及减少的 F-actin 聚合和 CaMKII 募集。这些表型可以通过稳定 F-actin 丝和敲低 Profilin2 来挽救,后者也是突触前 F-actin 组装的另一个调节剂。重要的是,我们发现 Pclo 基因第 14 外显子缺失的靶向小鼠,据报道缺乏 >95%的 Piccolo,继续表达多种 Piccolo 同工型。此外,由于这些同工型在突触前末梢的表达,来自这些小鼠的神经元培养物中不存在突触前 F-actin 组装缺陷。这些数据表明,Piccolo 通过促进活性依赖性 F-actin 组装和关键信号分子在突触前末梢的动态募集来调节神经递质释放,并强调需要新的遗传模型来研究 Piccolo 的功能丧失。

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