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Forebrain Deletion of αGDI in Adult Mice Worsens the Pre-Synaptic Deficit at Cortico-Lateral Amygdala Synaptic Connections

机译:成年小鼠前脑αGDI的缺失使皮质-侧杏仁核突触连接处的突触前不足。

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摘要

The GDI1 gene encodes αGDI, which retrieves inactive GDP-bound RAB from membranes to form a cytosolic pool awaiting vesicular release. Mutations in GDI1 are responsible for X-linked Intellectual Disability. Characterization of the Gdi1-null mice has revealed alterations in the total number and distribution of hippocampal and cortical synaptic vesicles, hippocampal short-term synaptic plasticity and specific short-term memory deficits in adult mice, which are possibly caused by alterations of different synaptic vesicle recycling pathways controlled by several RAB GTPases. However, interpretation of these studies is complicated by the complete ablation of Gdi1 in all cells in the brain throughout development. In this study, we generated conditionally gene-targeted mice in which the knockout of Gdi1 is restricted to the forebrain, hippocampus, cortex and amygdala and occurs only during postnatal development. Adult mutant mice reproduce the short-term memory deficit previously reported in Gdi1-null mice. Surprisingly, the delayed ablation of Gdi1 worsens the pre-synaptic phenotype at cortico-amygdala synaptic connections compared to Gdi1-null mice. These results suggest a pivotal role of αGDI via specific RAB GTPases acting specifically in forebrain regions at the pre-synaptic sites involved in memory formation.
机译:GDI1基因编码αGDI,αGDI从膜上取回无效的GDP结合的RAB,形成胞浆池,等待水泡释放。 GDI1中的突变是造成X连锁智力障碍的原因。 Gdi1-null小鼠的表征表明,成年小鼠海马和皮层突触小泡的总数和分布,海马短期突触可塑性和特定的短期记忆缺陷可能发生了改变,这可能是由于不同突触小泡的改变引起的几个RAB GTPases控制的循环途径。然而,在整个发育过程中,大脑中所有细胞中Gdi1的完全消融使这些研究的解释变得复杂。在这项研究中,我们生成了有条件的基因靶向小鼠,其中Gdi1的敲除仅限于前脑,海马,皮质和杏仁核,仅在产后发育期间发生。成年突变小鼠复制以前在Gdi1-null小鼠中报告的短期记忆缺陷。出乎意料的是,与Gdi1无效的小鼠相比,Gdi1的延迟消融使皮质-杏仁核突触连接处的突触前表型恶化。这些结果表明αGDI通过特定的RAB GTPases的关键作用,特别是在涉及记忆形成的突触前位点的前脑区域中起作用。

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