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EphB2 受体正向信号对于老年小鼠正常的长期记忆形成是必需的。

EphB2 receptor forward signaling is needed for normal long-term memory formation in aged mice.

机构信息

Sagol Department of Neurobiology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.

Sagol Department of Neurobiology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.

出版信息

Neurobiol Aging. 2020 Feb;86:11-15. doi: 10.1016/j.neurobiolaging.2019.10.019. Epub 2019 Nov 2.

Abstract

The molecular mechanisms underpinning age-related changes in the ability to form long-term memory need to be clarified. EphB2 receptors and their ephrin ligands are involved in key cellular functions such as neuronal morphogenesis and synaptic transmission believed to be involved in long-term memory formation. We were therefore interested to explore whether EphB2 is involved in the alterations in memory formation abilities observed in old age. Toward that end, we examined the ability to form long-term memory in mice that lack EphB2 (EphB2). A previous study has shown that the ability to form long-term conditioned taste aversion (CTA) memory in young EphB2 mice remains intact. In the present study, we report that long-term CTA memory formation is improved in old wild-type mice but not in age-matched old EphB2 mice. To further explore EphB2 mechanisms responsible for this difference in memory formation ability, we examined CTA memory in EphB2 mice devoid of EphB2 forward signaling. We found that the ability to create CTA long-term memory is unaffected in young EphB2 mice. However, the ability to form an increased long-term CTA memory shown in old wild-type mice is impaired in old EphB2 mice. The inability to form enhanced CTA long-term memory in EphB2 and EphB2 old mice was not caused by differences in taste perception or ability to consume fluids. Thus, our observations show that the absence of EphB2 forward signaling in old mice impairs the ability to form enhanced long-term CTA memory and indicate that EphB2 forward signaling is needed for normal memory formation in aged mice.

摘要

年龄相关的长期记忆形成能力变化的分子机制尚需阐明。EphB2 受体及其配体 ephrin 参与神经元形态发生和突触传递等关键细胞功能,这些功能被认为与长期记忆形成有关。因此,我们有兴趣探讨 EphB2 是否参与老年时观察到的记忆形成能力的改变。为此,我们研究了缺乏 EphB2(EphB2)的小鼠形成长期记忆的能力。先前的一项研究表明,年轻 EphB2 小鼠形成长期条件味觉厌恶(CTA)记忆的能力保持完整。在本研究中,我们报告说,老年野生型小鼠的长期 CTA 记忆形成能力得到了改善,但年龄匹配的老年 EphB2 小鼠则没有。为了进一步探讨 EphB2 机制负责这种记忆形成能力的差异,我们检查了 EphB2 小鼠中缺乏 EphB2 正向信号传导的 CTA 记忆。我们发现,年轻 EphB2 小鼠形成 CTA 长期记忆的能力不受影响。然而,在老年野生型小鼠中观察到的形成增强的长期 CTA 记忆的能力在老年 EphB2 小鼠中受损。EphB2 和 EphB2 老年小鼠中不能形成增强的 CTA 长期记忆并不是由于味觉感知或消耗液体的能力不同所致。因此,我们的观察结果表明,老年小鼠中 EphB2 正向信号的缺失损害了形成增强的长期 CTA 记忆的能力,并表明 EphB2 正向信号对于老年小鼠的正常记忆形成是必需的。

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