Andrieux Annie, Salin Paul A, Vernet Muriel, Kujala Pekka, Baratier Julie, Gory-Fauré Sylvie, Bosc Christophe, Pointu Hervé, Proietto Dominique, Schweitzer Annie, Denarier Eric, Klumperman Judith, Job Didier
Laboratoire du Cytosquelette, INSERM U366, Département Réponse et Dynamique Cellulaire, CEA-Grenoble, 38054 Grenoble, France.
Genes Dev. 2002 Sep 15;16(18):2350-64. doi: 10.1101/gad.223302.
Neurons contain abundant subsets of highly stable microtubules that resist depolymerizing conditions such as exposure to the cold. Stable microtubules are thought to be essential for neuronal development, maintenance, and function. Previous work has indicated an important role of the microtubule-associated protein STOP in the induction of microtubule cold stability. Here, we developed STOP null mice. These mice were devoid of cold-stable microtubules. In contrast to our expectations, STOP-/- mice had no detectable defects in brain anatomy but showed synaptic defects, with depleted synaptic vesicle pools and impaired synaptic plasticity, associated with severe behavioral disorders. A survey of the effects of psychotropic drugs on STOP-/- mice behavior showed a remarkable and specific effect of long-term administration of neuroleptics in alleviating these disorders. This study demonstrates that STOP is a major factor responsible for the intriguing stability properties of neuronal microtubules and is important for synaptic plasticity. Additionally, STOP-/- mice may yield a pertinent model for study of neuroleptics in illnesses such as schizophrenia, currently thought to result from synaptic defects.
神经元含有大量高度稳定的微管亚群,这些微管能够抵抗诸如暴露于寒冷等解聚条件。稳定的微管被认为对神经元的发育、维持和功能至关重要。先前的研究表明,微管相关蛋白STOP在诱导微管冷稳定性方面发挥着重要作用。在此,我们培育出了STOP基因敲除小鼠。这些小鼠缺乏冷稳定微管。与我们的预期相反,STOP基因敲除小鼠在脑解剖结构上没有可检测到的缺陷,但表现出突触缺陷,包括突触小泡池减少和突触可塑性受损,并伴有严重的行为障碍。一项关于精神药物对STOP基因敲除小鼠行为影响的调查显示,长期给予抗精神病药物对缓解这些障碍具有显著而特异性的效果。这项研究表明,STOP是导致神经元微管具有有趣稳定性特性的主要因素,并且对突触可塑性很重要。此外,STOP基因敲除小鼠可能为研究抗精神病药物在诸如精神分裂症等疾病中的作用提供一个相关模型,目前认为精神分裂症是由突触缺陷引起的。