Department of Physiology and Membrane Biology, University of California Davis School of Medicine, Davis, CA, USA.
Institute of Science and Technology Austria (ISTA), Klosterneuburg, Austria.
Nat Commun. 2023 Aug 26;14(1):5231. doi: 10.1038/s41467-023-40930-6.
Junctions between the endoplasmic reticulum (ER) and the plasma membrane (PM) are specialized membrane contacts ubiquitous in eukaryotic cells. Concentration of intracellular signaling machinery near ER-PM junctions allows these domains to serve critical roles in lipid and Ca signaling and homeostasis. Subcellular compartmentalization of protein kinase A (PKA) signaling also regulates essential cellular functions, however, no specific association between PKA and ER-PM junctional domains is known. Here, we show that in brain neurons type I PKA is directed to Kv2.1 channel-dependent ER-PM junctional domains via SPHKAP, a type I PKA-specific anchoring protein. SPHKAP association with type I PKA regulatory subunit RI and ER-resident VAP proteins results in the concentration of type I PKA between stacked ER cisternae associated with ER-PM junctions. This ER-associated PKA signalosome enables reciprocal regulation between PKA and Ca signaling machinery to support Ca influx and excitation-transcription coupling. These data reveal that neuronal ER-PM junctions support a receptor-independent form of PKA signaling driven by membrane depolarization and intracellular Ca, allowing conversion of information encoded in electrical signals into biochemical changes universally recognized throughout the cell.
内质网 (ER) 和质膜 (PM) 之间的连接点是真核细胞中普遍存在的特殊膜接触点。细胞内信号机制在 ER-PM 连接点附近的集中,使这些区域在脂质和 Ca 信号转导和稳态中发挥关键作用。蛋白激酶 A (PKA) 信号的亚细胞区室化也调节着重要的细胞功能,然而,PKA 与 ER-PM 连接域之间没有特定的关联。在这里,我们表明在脑神经元中,I 型 PKA 通过 SPHKAP 被导向 Kv2.1 通道依赖性 ER-PM 连接域,SPHKAP 是一种 I 型 PKA 特异性锚定蛋白。SPHKAP 与 I 型 PKA 调节亚基 RI 和 ER 驻留的 VAP 蛋白的结合导致与 ER-PM 连接点相关的堆叠 ER 腔室之间 I 型 PKA 的集中。这种 ER 相关的 PKA 信号体使 PKA 和 Ca 信号机制之间能够进行相互调节,以支持 Ca 内流和兴奋-转录偶联。这些数据表明,神经元 ER-PM 连接点支持由膜去极化和细胞内 Ca 驱动的受体非依赖性 PKA 信号转导,允许将电信号中编码的信息转换为细胞内普遍识别的生化变化。