Rao Eshaan R, Thaxton Tyler, Gama Eric, Godfrey Jack, Wei Cenfu, Lin Qiaoshan, Li Yan, Hejazi Pastor Daniel Parviz, Hansel Christian, Du Xiaofei, Gomez Christopher M
bioRxiv. 2025 Feb 16:2025.02.09.637126. doi: 10.1101/2025.02.09.637126.
VGCCs play crucial roles within the CNS, in maintaining cell excitability, enabling activity- dependent neuronal development, and forming long-term memory by regulating Ca influx. The intracellular carboxyl-terminal domains of VGCC α1 subunits help regulate VGCC function. Emerging evidence suggests that some VGCC C-termini have functions independent of channel gating and exist as stable proteins. Here, we demonstrate that all VGCC gene family members express bicistronic mRNA transcripts that produce functionally distinct C-terminal proteins (CTPs) in tandem with full-length VGCC α1 subunits. Two of these CTPs, α1CCT and α1ACT, cycle to and from the nucleus in a Ca - and calmodulin-dependent fashion. α1CCT, α1ACT, and α1HCT regulate chromatin accessibility and/or bind directly to genes, regulating gene networks involved in neuronal differentiation and synaptic function in a Ca -dependent manner. This study elucidates a conserved process of coordinated protein expression within the VGCC family, coupling the channel function with VGCC C-terminal transcription factors.
电压门控性钙通道(VGCCs)在中枢神经系统中发挥着关键作用,可维持细胞兴奋性,促进依赖活动的神经元发育,并通过调节钙离子内流形成长期记忆。VGCC α1亚基的细胞内羧基末端结构域有助于调节VGCC功能。新出现的证据表明,一些VGCC的C末端具有独立于通道门控的功能,并以稳定蛋白的形式存在。在此,我们证明所有VGCC基因家族成员均表达双顺反子mRNA转录本,这些转录本与全长VGCC α1亚基一起产生功能不同的C末端蛋白(CTPs)。其中两种CTP,即α1CCT和α1ACT,以依赖钙离子和钙调蛋白的方式在细胞核内外循环。α1CCT、α1ACT和α1HCT调节染色质可及性和/或直接与基因结合,以依赖钙离子的方式调节参与神经元分化和突触功能的基因网络。本研究阐明了VGCC家族内协调蛋白表达的保守过程,将通道功能与VGCC C末端转录因子联系起来。