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高影响 AMPAkines 在皮质神经元中诱导 Gq 蛋白偶联内质网钙释放:解释高影响 AMPAkines 毒性的可能机制。

High Impact AMPAkines Induce a Gq-Protein Coupled Endoplasmic Calcium Release in Cortical Neurons: A Possible Mechanism for Explaining the Toxicity of High Impact AMPAkines.

机构信息

RespireRx Pharmaceuticals, Inc., Glen Rock, New Jersey, USA.

出版信息

Synapse. 2024 Sep;78(5):e22310. doi: 10.1002/syn.22310.

Abstract

α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR) positive allosteric modulators (AMPAkines) have a multitude of promising therapeutic properties. The pharmaceutical development of high impact AMPAkines has, however, been limited by the appearance of calcium-dependent neuronal toxicity and convulsions in vivo. Such toxicity is not observed at exceptionally high concentrations of low impact AMPAkines. Because most AMPAR are somewhat impermeable to calcium, the current study sought to examine the extent to which different mechanisms contribute to the rise in intracellular calcium in the presence of high impact ampakines. In the presence of AMPA alone, cytosolic calcium elevation is shown to be sodium-dependent. In the presence of high impact AMPAkines such as cyclothiazide (CTZ) or CX614, however, AMPAR potentiation also activates an additional mechanism that induces calcium release from endoplasmic reticular (ER) stores. The pathway that connects AMPAR to the ER system involves a Gq-protein, phospholipase C-mediated inositol triphosphate (InsP3) formation, and ultimately stimulation of InsP3-receptors located on the ER. The same linkage was not observed using high concentrations of the low impact AMPAkines, CX516 (Ampalex), and CX717. We also demonstrate that CX614 produces neuronal hyper-excitability at therapeutic doses, whereas the newer generation low impact AMPAkine CX1739 is safe at exceedingly high doses. Although earlier studies have demonstrated a functional linkage between AMPAR and G-proteins, this report demonstrates that in the presence of high impact AMPAkines, AMPAR also couple to a Gq-protein, which triggers a secondary calcium release from the ER and provides insight into the disparate actions of high and low impact AMPAkines.

摘要

α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体 (AMPA) 正变构调节剂 (AMPAkines) 具有多种有前途的治疗特性。然而,高影响力 AMPAkines 的药物开发受到体内钙依赖性神经元毒性和惊厥的限制。在低影响力 AMPAkines 的异常高浓度下,不会观察到这种毒性。由于大多数 AMPAR 对钙的通透性稍差,因此本研究试图研究不同机制在存在高影响力 AMPAkines 时对细胞内钙升高的贡献程度。在单独存在 AMPA 的情况下,细胞溶质钙升高被证明是钠依赖性的。然而,在存在高影响力的 AMPAkines(如环噻嗪 (CTZ) 或 CX614)的情况下,AMPA 增强也激活了另一种机制,该机制诱导内质网 (ER) 储存中的钙释放。将 AMPAR 连接到 ER 系统的途径涉及 Gq 蛋白、磷脂酶 C 介导的三磷酸肌醇 (InsP3) 形成,最终刺激 ER 上的 InsP3 受体。使用高浓度的低影响力 AMPAkines(CX516 [Ampalex] 和 CX717)时,没有观察到相同的联系。我们还证明 CX614 在治疗剂量下会导致神经元过度兴奋,而新一代低影响力 AMPAkine CX1739 在极高剂量下是安全的。尽管早期的研究已经证明了 AMPAR 和 G 蛋白之间的功能联系,但本报告表明,在存在高影响力的 AMPAkines 时,AMPA 也与 Gq 蛋白偶联,这会触发 ER 中的二次钙释放,并深入了解高影响力和低影响力 AMPAkines 的不同作用。

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