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棕榈酰化 cdc42 促进脊柱稳定,并挽救 22q11.2 缺失综合征小鼠模型中的脊柱密度缺陷。

Palmitoylation of cdc42 Promotes Spine Stabilization and Rescues Spine Density Deficit in a Mouse Model of 22q11.2 Deletion Syndrome.

机构信息

Department of Basic Neurosciences, Medical School, University of Geneva, 1211 Geneva 4, Switzerland.

Cellular Neurophysiology, Hannover Medical School, 30625 Hannover, Germany.

出版信息

Cereb Cortex. 2017 Jul 1;27(7):3618-3629. doi: 10.1093/cercor/bhw183.

DOI:10.1093/cercor/bhw183
PMID:27365300
Abstract

22q11.2 deletion syndrome (22q11DS) is associated with learning and cognitive dysfunctions and a high risk of developing schizophrenia. It has become increasingly clear that dendritic spine plasticity is tightly linked to cognition. Thus, understanding how genes involved in cognitive disorders affect synaptic networks is a major challenge of modern biology. Several studies have pointed to a spine density deficit in 22q11DS transgenic mice models. Using the LgDel mouse model, we first quantified spine deficit at different stages using electron microscopy. Next we performed repetitive confocal imaging over several days on hippocampal organotypic cultures of LgDel mice. We show no imbalanced ratio between daily spine formation and spine elimination, but a decreased spine life expectancy. We corrected this impaired spine stabilization process by overexpressing ZDHHC8 palmitoyltransferase, whose gene belongs to the LgDel microdeletion. Overexpression of one of its substrates, the cdc42 brain-specific variant, under a constitutively active form (cdc42-palm-CA) led to the same result. Finally, we could rescue spine density in vivo, in adult LgDel mice, by injecting pups with a vector expressing cdc42-palm-CA. This study reveals a new role of ZDHHC8-cdc42-palm molecular pathway in postsynaptic structural plasticity and provides new evidence in favor of the dysconnectivity hypothesis for schizophrenia.

摘要

22q11.2 缺失综合征(22q11DS)与学习和认知功能障碍以及发展为精神分裂症的高风险相关。越来越明显的是,树突棘可塑性与认知密切相关。因此,了解涉及认知障碍的基因如何影响突触网络是现代生物学的主要挑战之一。几项研究指出,22q11DS 转基因小鼠模型存在棘突密度不足的现象。我们使用 LgDel 小鼠模型,首先使用电子显微镜在不同阶段定量测量棘突缺失。接下来,我们在 LgDel 小鼠的海马器官型培养物上进行了数天的重复共聚焦成像。我们没有发现棘突形成和消除之间的不平衡比例,但棘突预期寿命缩短。我们通过过表达属于 LgDel 微缺失的 ZDHHC8 棕榈酰转移酶来纠正这种受损的棘突稳定过程。其底物之一的 cdc42 脑特异性变体以组成型激活形式(cdc42-palm-CA)过表达也会产生相同的结果。最后,我们通过向幼鼠注射表达 cdc42-palm-CA 的载体,在体内拯救了成年 LgDel 小鼠的棘突密度。这项研究揭示了 ZDHHC8-cdc42-palm 分子途径在突触后结构可塑性中的新作用,并为精神分裂症的连接异常假说提供了新的证据。

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