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背侧和腹侧海马齿状回中 Sonic Hedgehog 信号的消融会损害抑郁大鼠模型中海马依赖的记忆任务和情绪。

Ablated Sonic Hedgehog Signaling in the Dentate Gyrus of the Dorsal and Ventral Hippocampus Impairs Hippocampal-Dependent Memory Tasks and Emotion in a Rat Model of Depression.

机构信息

Hunan University of Chinese Medicine, Changsha, 410208, Hunan, China.

Yiyang Central Hospital, Yiyang, 413000, Hunan, China.

出版信息

Mol Neurobiol. 2024 Jul;61(7):4352-4368. doi: 10.1007/s12035-023-03796-9. Epub 2023 Dec 12.

Abstract

Specific memory processes and emotional aberrations in depression can be attributed to the different dorsal-ventral regions of the hippocampus. However, the molecular mechanisms underlying the differential functions of the dorsal hippocampus (dHip) and ventral hippocampus (vHip) remain unclear. As Sonic Hedgehog (Shh) is involved in the dorsal-ventral patterning of the neural tube and its signaling is dysregulated by chronic unpredictable mild stress (CUMS), we investigated its role in influencing the differential functions of the dHip and vHip. Here, CUMS downregulated the expression of Shh signaling markers, including Shh and its downstream effectors GLI family zinc finger 12 (Gli1/2), Patched (Ptch), and smoothened (Smo), in both the dHip and vHip of rats, though more so in the vHip. Additionally, Shh knockdown in the dorsal or ventral dentate gyrus (DG) resulted in restrained neurogenic activity in newborn neurons, especially in immature neurons through decreased expression of Shh signaling markers. Furthermore, Shh knockdown in the DG of the dHip led to memory impairment by inhibiting experience-dependent activation of immature neurons, whereas its knockdown in the DG of the vHip led to an emotional handicap by delaying the maturation of immature neurons. Finally, Shh knockdown in either the dDG or vDG of hippocampus abolished the corresponding cognitive enhancement and emotional recovery of fluoxetine. In conclusion, Shh is essential to maintain the functional heterogeneity of dHip and vHip in depressed rat, which was mainly mediating by local changes of dependent activation and maturity of immature neurons, respectively.

摘要

特定的记忆过程和抑郁中的情绪异常可归因于海马体的不同背腹区域。然而,背侧海马体(dHip)和腹侧海马体(vHip)的不同功能的分子机制尚不清楚。由于 Sonic Hedgehog(Shh)参与神经管的背腹模式形成,其信号转导受慢性不可预测轻度应激(CUMS)的调节,我们研究了它在影响 dHip 和 vHip 的不同功能中的作用。在这里,CUMS 下调了 Shh 信号标志物的表达,包括 Shh 及其下游效应物 GLI 家族锌指蛋白 12(Gli1/2)、 patched(Ptch)和 smoothened(Smo),在大鼠的 dHip 和 vHip 中均有表达,但在 vHip 中更为明显。此外,dHip 或 vHip 背侧或腹侧齿状回(DG)中的 Shh 敲低导致新生神经元的神经发生活性受到抑制,尤其是通过减少 Shh 信号标志物的表达导致不成熟神经元减少。此外,dHip 的 DG 中的 Shh 敲低通过抑制不成熟神经元的经验依赖性激活导致记忆障碍,而 vHip 的 DG 中的 Shh 敲低通过延迟不成熟神经元的成熟导致情绪障碍。最后,海马体的 dDG 或 vDG 中的 Shh 敲低消除了氟西汀相应的认知增强和情绪恢复。总之,Shh 对于维持抑郁大鼠 dHip 和 vHip 的功能异质性至关重要,这主要是通过依赖激活和不成熟神经元成熟的局部变化来介导的。

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