Sagol Department of Neurobiology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.
Cell Mol Life Sci. 2024 Jun 24;81(1):277. doi: 10.1007/s00018-024-05317-w.
Many brain diseases lead to a reduction in the number of functional neurons and it would be of value to be able to increase the number of neurons in the affected brain areas. In this study, we examined whether we can promote neural stem cells to produce mature neurons and whether an increase in the mature neurons can affect cognitive performance. We detected that the EphB2 receptor is localized in immature basolateral amygdala (BLA) neurons. We therefore aimed to increase the level of EphB2 activity in neural stem cells (NSCs) in the BLA and examine the effects on the production of mature neurons and cognition. Toward that end, we utilized a photoactivatable EphB2 construct (optoEphB2) to increase EphB2 forward signaling in NSCs in the BLA. We revealed that the activation of optoEphB2 in NSCs in the BLA increased the level of immature and mature neurons in the BLA. We further found that activation of optoEphB2 in BLA NSCs enhanced auditory, but not contextual, long-term fear memory formation. Impairing EphB2 forward signaling did not affect the level of immature and mature neurons in the BLA. This study provides evidence that NSCs can be promoted to produce mature neurons by activating EphB2 to enhance specific brain functions.
许多脑部疾病会导致功能性神经元数量减少,如果能够增加受影响脑区的神经元数量,将会非常有价值。在这项研究中,我们研究了是否可以促进神经干细胞产生成熟神经元,以及成熟神经元数量的增加是否会影响认知表现。我们发现 EphB2 受体定位于未成熟的基底外侧杏仁核(BLA)神经元。因此,我们的目的是增加 BLA 中的神经干细胞(NSC)中 EphB2 的活性,以研究其对成熟神经元产生和认知的影响。为此,我们利用光激活 EphB2 构建体(optoEphB2)来增加 BLA NSCs 中 EphB2 的正向信号传导。结果表明,BLA NSCs 中 optoEphB2 的激活增加了 BLA 中未成熟和成熟神经元的数量。我们进一步发现,激活 BLA NSCs 中的 optoEphB2 增强了听觉而非情境的长期恐惧记忆形成。而抑制 EphB2 的正向信号传导则不会影响 BLA 中未成熟和成熟神经元的数量。这项研究提供了证据表明,通过激活 EphB2 促进神经干细胞产生成熟神经元可以增强特定的大脑功能。