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Encoding and transducing the synaptic or extrasynaptic origin of NMDA receptor signals to the nucleus

机译:将NMDA受体信号的突触或突触起源编码并转导至细胞核

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The activation of N-methyl-D-aspartate-receptors (NMDARs) in synapses provides plasticity and cell survival signals, whereas NMDARs residing in the neuronal membrane outside synapses trigger neurodegeneration. At present, it is unclear how these opposing signals are transduced to and discriminated by the nucleus. In this study, we demonstrate that Jacob is a protein messenger that encodes the origin of synaptic versus extrasynaptic NMDAR signals and delivers them to the nucleus. Exclusively synaptic, but not extrasynaptic, NMDAR activation induces phosphorylation of Jacob at serine-180 by ERK1/2. Long-distance trafficking of Jacob from synaptic, but not extrasynaptic, sites depends on ERK activity, and association with fragments of the intermediate filament α-internexin hinders dephosphorylation of the Jacob/ERK complex during nuclear transit. In the nucleus, the phosphorylation state of Jacob determines whether it induces cell death or promotes cell survival and enhances synaptic plasticity.
机译:突触中N-甲基-D-天冬氨酸受体(NMDARs)的激活提供可塑性和细胞存活信号,而突触外神经元膜中的NMDAR则触发神经变性。目前,尚不清楚这些相反的信号如何转导至细胞核并由细胞核区分。在这项研究中,我们证明了Jacob是一种蛋白信使,它编码突触与突触外NMDAR信号的起源,并将其传递至细胞核。 NMDAR激活仅在突触中发生,而在突触外不发生,通过ERK1 / 2诱导丝氨酸180处的Jacob磷酸化。雅各布从突触部位(而非突触外部位)的远距离贩运取决于ERK活性,并且与中间丝α-internexin片段的缔合阻碍了核转运期间雅各布/ ERK复合物的去磷酸化。在细胞核中,雅各的磷酸化状态决定了它是诱导细胞死亡还是促进细胞存活并增强突触可塑性。

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