Microtubule-stabilizing and -destabilizing proteins play a crucial role in regulating the dynamic instability of microtubules during neuronal development and synaptic transmission. The microtubule-destabilizing protein SCG10 is a neuron-specific protein implicated in neurite outgrowth. The SCG10 protein is significantly reduced in mature neurons, suggesting that its expression is developmentally regulated. In contrast, the microtubule-stabilizing protein tau is expressed in mature neurons and its function is essential for the maintenance of neuronal polarity and neuronal survival. Thus, the establishment and maintenance of neuronal polarity may down-regulate the protein level/function of SCG10. In this report, we show that treatment of PC12 cells and neuroblastoma cells with the microtubule-stabilizing drug Taxol induced a rapid degradation of the SCG10 protein. Consistently, overexpression of tau protein in neuroblastoma cells also induced a reduction in SCG10 protein levels. Calpain inhibitor MDL-28170, but not caspase inhibitors, blocked a significant decrease in SCG10 protein levels. Collectively, these results indicate that tau overexpression and Taxol treatment induced a calpain-dependent degradation of the microtubule-destabilizing protein SCG10. The results provide evidence for the existence of an intracellular mechanism involved in the regulation of SCG10 upon microtubule stabilization.

译文

:微管稳定蛋白和去稳定蛋白在调节神经元发育和突触传递过程中微管的动态不稳定性中起关键作用。破坏微管的蛋白SCG10是神经元特异性蛋白,与神经突增生有关。 SCG10蛋白在成熟神经元中显着减少,表明其表达受到发育调节。相反,微管稳定蛋白tau在成熟的神经元中表达,其功能对于维持神经元极性和神经元存活至关重要。因此,神经元极性的建立和维持可能下调SCG10的蛋白质水平/功能。在本报告中,我们显示了用微管稳定药物紫杉醇治疗PC12细胞和成神经细胞瘤细胞会诱导SCG10蛋白快速降解。一致地,神经母细胞瘤细胞中tau蛋白的过表达也诱导了SCG10蛋白水平的降低。钙蛋白酶抑制剂MDL-28170而非caspase抑制剂阻止了SCG10蛋白水平的显着降低。总的来说,这些结果表明tau的过度表达和紫杉酚的处理诱导了钙蛋白酶依赖性降解的微管去稳定蛋白SCG10。结果提供了微管稳定后SCG10调控中涉及的细胞内机制的存在的证据。

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