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The differential hippocampal phosphoproteome of Apodemus sylvaticus paralleling spatial memory retrieval in the Barnes maze

机译:姬鼠姬鼠海马差异蛋白质组与Barnes迷宫中的空间记忆检索平行

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摘要

Protein phosphorylation is a well-known and well-documented mechanism in memory processes. Although a large series of protein kinases involved in memory processes have been reported, information on phosphoproteins is limited. It was therefore the aim of the study to determine a partial and differential phosphoproteome along with the corresponding network in hippocampus of a wild caught mouse strain with excellent performance in several paradigms of spatial memory. Apodemus sylvaticus mice were trained in the Barnes maze, a non-invasive test system for spatial memory and untrained mice served as controls.Animals were sacrificed 6h following memory retrieval, hippocampi were taken, proteins extracted and in-solution digestion was carried out with subsequent iTRAQ double labelling. Phosphopeptides were enriched by a TiO2-based method and semi-quantified using two fragmentation principles on the LTQ-orbitrap Velos. In hippocampi of trained animals phosphopeptide levels representing signalling, neuronal, synaptosomal, cytoskeletal and metabolism proteins were at least twofold reduced or increased. Furthermore, a network revealing a link to pathways of ubiquitination, the androgen receptor, small GTPase Rab5 and MAPK signaling as well as synucleins was constructed. This work is relevant for interpretation of previous work and the design of future studies on protein phosphorylation in spatial memory.
机译:蛋白质磷酸化是记忆过程中众所周知的机制。尽管已经报道了涉及记忆过程的大量蛋白激酶,但是有关磷蛋白的信息却很有限。因此,本研究的目的是确定野生捕获的小鼠品系的海马中的部分和差异磷酸化蛋白质组以及相应的网络,在几种空间记忆范例中均具有出色的性能。在巴恩斯迷宫(Barnes maze)中训练姬鼠(Apodemus sylvaticus)小鼠,该模型是一种非侵入性的空间记忆测试系统,未经训练的小鼠作为对照组。记忆恢复后6h处死动物,采集海马体,提取蛋白并在溶液中进行消化,随后进行消化iTRAQ双重标签。通过基于TiO2的方法富集磷酸肽,并在LTQ-orbitrap Velos上使用两种裂解原理进行半定量。在受过训练的动物海马中,代表信号蛋白,神经元蛋白,突触体蛋白,细胞骨架蛋白和代谢蛋白的磷酸肽水平至少降低或提高了两倍。此外,构建了揭示与泛素化途径,雄激素受体,小的GTPase Rab5和MAPK信号传导以及突触核蛋白的联系的网络。这项工作与以前的工作的解释和空间记忆中蛋白质磷酸化的未来研究设计有关。

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