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Membrane‐associated guanylate kinase dynamics reveal regional and developmental specificity of synapse stability

机译:膜相关鸟苷酸激酶动力学揭示突触稳定性的区域和发展特异性。

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摘要

Key points class="unordered" style="list-style-type:disc" id="tjp12105-list-0001">The membrane‐associated guanylate kinase (MAGUK) family of synaptic scaffolding proteins anchor glutamate receptors at CNS synapses.MAGUK removal via RNAi‐mediated knockdown in the CA1 hippocampal region in immature animals causes rapid and lasting reductions in glutamatergic transmission. In mature animals, the same manipulation has little acute effect.The hippocampal dentate gyrus, a region with ongoing adult neurogenesis, is sensitive to MAGUK loss in mature animals, behaving like an immature CA1.Over long time courses, removal of MAGUKs in CA1 causes reductions in glutamatergic transmission, indicating that synapses in mature animals require MAGUKs for anchoring glutamate receptors, but are much more stable.These results demonstrate regional and developmental control of synapse stability and suggest the existence of a sensitive period of heightened hippocampal plasticity in CA1 of pre‐adolescent rodents, and in dentate gyrus throughout maturity.
机译:关键点 class =“ unordered” style =“ list-style-type:disc” id =“ tjp12105-list-0001”> <!-list-behavior = unordered prefix-word = mark-type = disc max- label-size = 0-> 膜相关鸟苷酸激酶(MAGUK)家族的突触支架蛋白将谷氨酸受体锚定在CNS突触中。 MAGUK通过RNAi介导的敲除CA1海马体而被去除。未成熟动物的这一区域会导致谷氨酸能传递迅速而持久地减少。在成熟的动物中,相同的操作几乎没有急性作用。 海马齿状回(一个持续进行成年神经发生的区域)对成熟动物中的MAGUK丢失敏感,表现为未成熟的CA1。 在长期的过程中,CA1中MAGUK的去除导致谷氨酸能传递的减少,这表明成熟动物的突触需要MAGUK锚定谷氨酸受体,但更加稳定。 这些结果证明了区域性和区域性突触稳定性的发育控制,并表明在青春期前啮齿动物的CA1和整个成熟期的齿状回中存在海马可塑性增强的敏感时期。

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