线粒体钙单向转运体抑制剂 Ru265 通过非靶标效应增加神经元兴奋性并减少神经递质传递。

The mitochondrial calcium uniporter inhibitor Ru265 increases neuronal excitability and reduces neurotransmission via off-target effects.

机构信息

Department of Physiology and Cell Biology, University of Nevada, Reno, Reno, Nevada, USA.

Department of Pharmacology, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

Br J Pharmacol. 2024 Sep;181(18):3503-3526. doi: 10.1111/bph.16425. Epub 2024 May 23.

Abstract

BACKGROUND AND PURPOSE

Excitotoxicity due to mitochondrial calcium (Ca) overloading can trigger neuronal cell death in a variety of pathologies. Inhibiting the mitochondrial calcium uniporter (MCU) has been proposed as a therapeutic avenue to prevent calcium overloading. Ru265 (ClRu(NH)(μ-N)Ru(NH)Cl]Cl) is a cell-permeable inhibitor of the mitochondrial calcium uniporter (MCU) with nanomolar affinity. Ru265 reduces sensorimotor deficits and neuronal death in models of ischemic stroke. However, the therapeutic use of Ru265 is limited by the induction of seizure-like behaviours.

EXPERIMENTAL APPROACH

We examined the effect of Ru265 on synaptic and neuronal function in acute brain slices and hippocampal neuron cultures derived from mice, in control and where MCU expression was genetically abrogated.

KEY RESULTS

Ru265 decreased evoked responses from calyx terminals and induced spontaneous action potential firing of both the terminal and postsynaptic principal cell. Recordings of presynaptic Ca currents suggested that Ru265 blocks the P/Q type channel, confirmed by the inhibition of currents in cells exogenously expressing the P/Q type channel. Measurements of presynaptic K currents further revealed that Ru265 blocked a KCNQ current, leading to increased membrane excitability, underlying spontaneous spiking. Ca imaging of hippocampal neurons showed that Ru265 increased synchronized, high-amplitude events, recapitulating seizure-like activity seen in vivo. Importantly, MCU ablation did not suppress Ru265-induced increases in neuronal activity and seizures.

CONCLUSIONS AND IMPLICATIONS

Our findings provide a mechanistic explanation for the pro-convulsant effects of Ru265 and suggest counter screening assays based on the measurement of P/Q and KCNQ channel currents to identify safe MCU inhibitors.

摘要

背景与目的

线粒体钙(Ca)超载引起的兴奋毒性可触发多种病理状态下的神经元细胞死亡。抑制线粒体钙单向转运体(MCU)已被提议作为防止钙超载的治疗途径。Ru265(ClRu(NH)(μ-N)Ru(NH)Cl]Cl)是一种具有纳摩尔亲和力的线粒体钙单向转运体(MCU)的细胞通透性抑制剂。Ru265 可减少缺血性中风模型中的感觉运动缺陷和神经元死亡。然而,Ru265 的治疗用途受到诱导类似癫痫发作行为的限制。

实验方法

我们在急性脑切片和源自小鼠的海马神经元培养物中检查了 Ru265 对突触和神经元功能的影响,在控制组和 MCU 表达被遗传破坏的情况下进行了检查。

主要结果

Ru265 降低了从 calyx 末梢诱发的反应,并诱导了末梢和突触后主细胞的自发动作电位放电。记录的突触前 Ca 电流表明 Ru265 阻断了 P/Q 型通道,这通过抑制在体外表达 P/Q 型通道的细胞中的电流得到证实。突触前 K 电流的测量进一步表明,Ru265 阻断了 KCNQ 电流,导致膜兴奋性增加,从而产生自发性尖峰。海马神经元的钙成像显示,Ru265 增加了同步的、高振幅事件,再现了体内观察到的类似癫痫发作的活动。重要的是,MCU 缺失并不能抑制 Ru265 诱导的神经元活动和癫痫发作增加。

结论和意义

我们的发现为 Ru265 的促惊厥作用提供了机制解释,并提出了基于 P/Q 和 KCNQ 通道电流测量的反筛选测定,以识别安全的 MCU 抑制剂。

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