Department of Pharmacobiology, Jagiellonian University Medical College, Medyczna 9, PL 30-688 Krakow, Poland.
Neuroscience. 2022 Nov 1;503:1-16. doi: 10.1016/j.neuroscience.2022.09.002. Epub 2022 Sep 7.
As a neuromodulator, zinc regulates synaptic plasticity, learning and memory. Synaptic zinc is also a crucial factor in the development of toxic forms of amyloid beta protein and, subsequently, of Alzheimer's dementia (AD). Therefore, efforts to pinpoint mechanisms underlying zinc-dependent cognitive functions might aid AD research, by providing potential novel targets for drugs. One of the most understudied proteins in this regard is a zinc-sensing metabotropic receptor: GPR39. In this study we investigated the impact of GPR39 knock-out (KO) on age-related memory decline in mice of both sexes, by comparing them to age-matched wild-type (WT) littermates. We also tested the effects of a GPR39 agonist (TC-G 1008) on declarative memory of old animals, and its disruption in adult mice. We observed episodic-like memory (ELM) and spatial memory (SM) deficits in male GPR39 KO mice, as well as intact procedural memory in GPR39 KO mice regardless of age and sex. ELM was also absent in old WT male mice, and all female mice regardless of their genotype. Acute application of TC-G 1008 (10 mg/kg) reversed a deficit in two of three ELM components in old WT male mice, and had no promnesic effect on consolidation interference of ELM in adult WT mice. We discuss the possible neurobiological mechanisms and the translational value of these results for potential add-on pharmacotherapy of AD aimed at the zinc-sensing receptor.
作为一种神经调质,锌调节突触可塑性、学习和记忆。突触锌也是淀粉样β蛋白毒性形式发展的关键因素,进而也是阿尔茨海默病(AD)的关键因素。因此,努力确定锌依赖性认知功能的机制可能有助于 AD 研究,为药物提供潜在的新靶点。在这方面研究最少的蛋白质之一是一种锌感应代谢型受体:GPR39。在这项研究中,我们通过比较雌雄同体的年龄匹配野生型(WT)同窝仔,研究了 GPR39 敲除(KO)对两性小鼠年龄相关记忆衰退的影响。我们还测试了 GPR39 激动剂(TC-G 1008)对老年动物陈述性记忆的影响,以及成年小鼠中其阻断作用。我们观察到雄性 GPR39 KO 小鼠出现类发作性记忆(ELM)和空间记忆(SM)缺陷,而无论年龄和性别,GPR39 KO 小鼠的程序性记忆都完整。老年 WT 雄性小鼠也没有 ELM,所有雌性小鼠无论其基因型如何都没有 ELM。急性应用 TC-G 1008(10 mg/kg)逆转了老年 WT 雄性小鼠三种 ELM 成分中的两种缺陷,并且对成年 WT 小鼠的 ELM 巩固干扰没有促智作用。我们讨论了这些结果的可能神经生物学机制及其对 AD 的潜在附加药物治疗的转化价值,目的是针对锌感应受体。