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Stathmin 对于果蝇神经肌肉接头的稳定性是必需的。

Stathmin is required for stability of the Drosophila neuromuscular junction.

机构信息

Department of Biology and Neuroscience Program, Amherst College, Amherst, Massachusetts 01002, USA.

出版信息

J Neurosci. 2011 Oct 19;31(42):15026-34. doi: 10.1523/JNEUROSCI.2024-11.2011.

Abstract

Synaptic connections can be stably maintained for prolonged periods, yet can be rapidly disassembled during the developmental refinement of neural circuitry and following cytological insults that lead to neurodegeneration. To date, the molecular mechanisms that determine whether a synapse will persist versus being remodeled or eliminated remain poorly understood. Mutations in Drosophila stathmin were isolated in two independent genetic screens that sought mutations leading to impaired synapse stability at the Drosophila neuromuscular junction (NMJ). Here we demonstrate that Stathmin, a protein that associates with microtubules and can function as a point of signaling integration, is necessary to maintain the stability of the Drosophila NMJ. We show that Stathmin protein is widely distributed within motoneurons and that loss of Stathmin causes impaired NMJ growth and stability. In addition, we show that stathmin mutants display evidence of defective axonal transport, a common feature associated with neuronal degeneration and altered synapse stability. The disassembly of the NMJ in stathmin includes a predictable sequence of cytological events, suggesting that a common program of synapse disassembly is induced following the loss of Stathmin protein. These data define a required function for Stathmin during synapse maintenance in a model system in which there is only a single stathmin gene, enabling future genetic investigation of Stathmin function with potential relevance to the cause and progression of neuromuscular degenerative disease.

摘要

突触连接可以稳定地维持很长一段时间,但在神经回路的发育细化和导致神经退行性变的细胞病变之后,它们可以迅速解体。迄今为止,决定一个突触是持续存在、被重塑还是被消除的分子机制仍知之甚少。在两个独立的遗传筛选中分离出果蝇 stathmin 的突变,这些筛选旨在寻找导致果蝇神经肌肉接头 (NMJ) 突触稳定性受损的突变。在这里,我们证明了 Stathmin(一种与微管结合并可以作为信号整合点发挥作用的蛋白质)对于维持果蝇 NMJ 的稳定性是必需的。我们表明,Stathmin 蛋白在运动神经元中广泛分布,并且 Stathmin 的缺失会导致 NMJ 生长和稳定性受损。此外,我们还表明,stathmin 突变体表现出轴突运输缺陷的证据,这是与神经元变性和突触稳定性改变相关的常见特征。NMJ 在 stathmin 中的解体包括一系列可预测的细胞学事件,这表明在 Stathmin 蛋白丢失后,会诱导一个共同的突触解体程序。这些数据定义了在仅有一种 stathmin 基因的模型系统中,Stathmin 在维持突触中的必需功能,这为未来对 Stathmin 功能的遗传研究提供了可能与神经肌肉退行性疾病的原因和进展相关的潜力。

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