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Altered social behavior and neuronal development in mice lacking the Uba6-Use1 ubiquitin transfer system

机译:改变社会行为和神经发育的小鼠缺乏Uba6-UsE1泛素传输系统

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摘要

The Uba6 (E1)-Use1 (E2) ubiquitin transfer cascade is a poorly understood alternative arm of the ubiquitin proteasome system (UPS) required for mouse embryonic development, independent of the canonical Uba1-E2-E3 pathway. Loss of neuronal Uba6 during embryonic development results in altered patterning of neurons in the hippocampus and the amygdala, decreased dendritic spine density, and numerous behavioral disorders. The levels of the E3 ubiquitin ligase Ube3a (E6-AP) and Shank3, both linked with dendritic spine function, are elevated in the amygdala of Uba6-deficient mice, while levels of the Ube3a substrate Arc are reduced. Uba6 and Use1 promote proteasomal turnover of Ube3a in mouse embryo fibroblasts (MEFs) and catalyze Ube3a ubiquitylation in vitro. These activities occur in parallel with an independent pathway involving Uba1-UbcH7, but in a spatially distinct manner in MEFs. These data reveal an unanticipated role for Uba6 in neuronal development, spine architecture, mouse behavior, and turnover of Ube3a.
机译:Uba6(E1)-Use1(E2)泛素转移级联是小鼠胚胎发育所需的泛素蛋白酶体系统(UPS)的替代臂,人们对此知之甚少,而与规范的Uba1-E2-E3途径无关。胚胎发育过程中神经元Uba6的丧失导致海马和杏仁核中神经元的模式改变,树突棘密度降低以及许多行为障碍。 E3泛素连接酶Ube3a(E6-AP)和Shank3的水平与树突棘功能相关,在Uba6缺陷小鼠的杏仁核中升高,而Ube3a底物Arc的水平降低。 Uba6和Use1促进小鼠胚胎成纤维细胞(MEF)中Ube3a的蛋白酶体更新并在体外催化Ube3a泛素化。这些活动与涉及Uba1-UbcH7的独立途径并行发生,但在MEF中以空间不同的方式发生。这些数据揭示了Uba6在神经元发育,脊柱结构,小鼠行为和Ube3a转换中的意外作用。

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