RG Neuroplasticity, Leibniz Institute for Neurobiology, 39118, Magdeburg, Germany.
Center for Behavioral Brain Sciences, Otto von Guericke University, 39106, Magdeburg, Germany.
Cell Mol Life Sci. 2023 Jul 25;80(8):228. doi: 10.1007/s00018-023-04876-8.
Nuclear Ca waves elicited by NMDAR and L-type voltage-gated Ca-channels as well as protein transport from synapse-to-nucleus are both instrumental in control of plasticity-related gene expression. At present it is not known whether fast [Ca] transients converge in the nucleus with signaling of synapto-nuclear protein messenger. Jacob is a protein that translocate a signalosome from N-methyl-D-aspartate receptors (NMDAR) to the nucleus and that docks this signalosome to the transcription factor CREB. Here we show that the residing time of Jacob in the nucleoplasm strictly correlates with nuclear [Ca] transients elicited by neuronal activity. A steep increase in [Ca] induces instantaneous uncoupling of Jacob from LaminB1 at the nuclear lamina and promotes the association with the transcription factor cAMP-responsive element-binding protein (CREB) in hippocampal neurons. The size of the Jacob pool at the nuclear lamina is controlled by previous activity-dependent nuclear import, and thereby captures the previous history of NMDAR-induced nucleocytoplasmic shuttling. Moreover, the localization of Jacob at the nuclear lamina strongly correlates with synaptic activity and [Ca] waves reflecting ongoing neuronal activity. In consequence, the resulting extension of the nuclear residing time of Jacob amplifies the capacity of the Jacob signalosome to regulate CREB-dependent gene expression and will, thereby, compensate for the relatively small number of molecules reaching the nucleus from individual synapses.
核内 Ca 波由 NMDA 受体和 L 型电压门控 Ca 通道引发,以及蛋白质从突触到核的运输,都有助于控制与可塑性相关的基因表达。目前尚不清楚快速 Ca 瞬变是否与突触到核蛋白信使的信号在核内汇聚。Jacob 是一种将信号体从 N-甲基-D-天冬氨酸受体 (NMDAR) 转运到细胞核,并将该信号体与转录因子 CREB 对接的蛋白质。在这里,我们表明 Jacob 在核质中的停留时间与神经元活动引发的核内 Ca 瞬变严格相关。[Ca] 的急剧增加会立即使 Jacob 与核纤层蛋白 B1 在核纤层上解偶联,并促进其与 CA 反应元件结合蛋白 (CREB) 在海马神经元中的结合。核纤层中 Jacob 池的大小受先前依赖活动的核内输入控制,从而捕获了 NMDA 诱导的核质穿梭的先前历史。此外,Jacob 在核纤层上的定位与反映持续神经元活动的突触活动和 Ca 波强烈相关。因此,Jacob 的核内停留时间的延长增强了 Jacob 信号体调节 CREB 依赖性基因表达的能力,从而补偿了从单个突触到达细胞核的相对较少的分子数量。