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Metabotropic glutamate receptor-dependent long-term depression is impaired due to elevated ERK signaling in the δRG mouse model of tuberous sclerosis complex

机译:结节性硬化复合物的δRG小鼠模型中,由于ERK信号转导升高,代谢型谷氨酸受体依赖性长期抑郁症受损

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摘要

Tuberous sclerosis complex (TSC) and fragile X syndrome (FXS) are caused by mutations in negative regulators of translation. FXS model mice exhibit enhanced metabotropic glutamate receptor-dependent long-term depression (mGluR-LTD). Therefore, we hypothesized that a mouse model of TSC, δRG transgenic mice, also would exhibit enhanced mGluR-LTD. We measured the impact of TSC2-GAP mutations on the mTORC1 and ERK signaling pathways and protein synthesis-dependent hippocampal synaptic plasticity in δRG transgenic mice. These mice express a dominantegative TSC2 that binds to TSC1, but has a deletion and substitution mutation in its GAP-domain, resulting in inactivation of the complex. Consistent with previous studies of several other lines of TSC model mice, we observed elevated S6 phosphorylation in the brains of δRG mice, suggesting upregulated translation. Surprisingly, mGluR-LTD was not enhanced, but rather was impaired in the δRG transgenic mice, indicating that TSC and FXS have divergent synaptic plasticity phenotypes. Similar to patients with TSC, the δRG transgenic mice exhibit elevated ERK signaling. Moreover, the mGluR-LTD impairment displayed by the δRG transgenic mice was rescued with the MEK-ERK inhibitor U0126. Our results suggest that the mGluR-LTD impairment observed in δRG mice involves aberrant TSC1/2-ERK signaling.
机译:结节性硬化症复合物(TSC)和脆性X综合征(FXS)由翻译的负调控子突变引起。 FXS模型小鼠表现出增强的代谢型谷氨酸受体依赖性长期抑制(mGluR-LTD)。因此,我们假设,TSC的小鼠模型δRG转基因小鼠也将表现出增强的mGluR-LTD。我们在δRG转基因小鼠中测量了TSC2-GAP突变对mTORC1和ERK信号通路以及蛋白质合成依赖性海马突触可塑性的影响。这些小鼠表达与TSC1结合的显性/阴性TSC2,但在其GAP结构域中具有缺失和取代突变,从而导致复合物失活。与先前对TSC模型小鼠的其他几系的研究一致,我们观察到δRG小鼠大脑中S6磷酸化水平升高,提示翻译上调。出人意料的是,在δRG转基因小鼠中,mGluR-LTD并未得到增强,而是受到了损害,这表明TSC和FXS具有不同的突触可塑性表型。与TSC患者相似,δRG转基因小鼠表现出升高的ERK信号传导。此外,用MEK-ERK抑制剂U0126挽救了δRG转基因小鼠表现出的mGluR-LTD损伤。我们的结果表明,在δRG小鼠中观察到的mGluR-LTD损伤涉及异常的TSC1 / 2-ERK信号传导。

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