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TOB 是海马体介导的急性应激反应的效应物。

TOB is an effector of the hippocampus-mediated acute stress response.

机构信息

Cell Signal Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan.

Neural Computation Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan.

出版信息

Transl Psychiatry. 2022 Jul 29;12(1):302. doi: 10.1038/s41398-022-02078-7.

Abstract

Stress affects behavior and involves critical dynamic changes at multiple levels ranging from molecular pathways to neural circuits and behavior. Abnormalities at any of these levels lead to decreased stress resilience and pathological behavior. However, temporal modulation of molecular pathways underlying stress response remains poorly understood. Transducer of ErbB2.1, known as TOB, is involved in different physiological functions, including cellular stress and immediate response to stimulation. In this study, we investigated the role of TOB in psychological stress machinery at molecular, neural circuit, and behavioral levels. Interestingly, TOB protein levels increased after mice were exposed to acute stress. At the neural circuit level, functional magnetic resonance imaging (fMRI) suggested that intra-hippocampal and hippocampal-prefrontal connectivity were dysregulated in Tob knockout (Tob-KO) mice. Electrophysiological recordings in hippocampal slices showed increased postsynaptic AMPAR-mediated neurotransmission, accompanied by decreased GABA neurotransmission and subsequently altered Excitatory/Inhibitory balance after Tob deletion. At the behavioral level, Tob-KO mice show abnormal, hippocampus-dependent, contextual fear conditioning and extinction, and depression-like behaviors. On the other hand, increased anxiety observed in Tob-KO mice is hippocampus-independent. At the molecular level, we observed changes in factors involved in stress response like decreased stress-induced LCN2 expression and ERK phosphorylation, as well as increased MKP-1 expression. This study introduces TOB as an important modulator in the hippocampal stress signaling machinery. In summary, we reveal a molecular pathway and neural circuit mechanism by which Tob deletion contributes to expression of pathological stress-related behavior.

摘要

压力会影响行为,并涉及从分子途径到神经回路和行为的多个层次的关键动态变化。这些水平中的任何异常都会导致压力弹性降低和病理性行为。然而,压力反应的分子途径的时间调制仍然知之甚少。ErbB2.1 的转导子,称为 TOB,参与了不同的生理功能,包括细胞应激和对刺激的即时反应。在这项研究中,我们研究了 TOB 在分子、神经回路和行为水平上的心理应激机制中的作用。有趣的是,TOB 蛋白水平在小鼠暴露于急性应激后增加。在神经回路水平上,功能磁共振成像(fMRI)表明,在 Tob 敲除(Tob-KO)小鼠中,海马内和海马-前额叶连接失调。海马切片中的电生理记录显示,突触后 AMPAR 介导的神经传递增加,伴随着 GABA 神经传递减少,随后在 Tob 缺失后改变了兴奋性/抑制性平衡。在行为水平上,Tob-KO 小鼠表现出异常的、依赖海马的、情境性恐惧条件反射和消退,以及类似抑郁的行为。另一方面,在 Tob-KO 小鼠中观察到的焦虑增加是海马独立性的。在分子水平上,我们观察到应激反应相关因素的变化,如应激诱导的 LCN2 表达和 ERK 磷酸化减少,以及 MKP-1 表达增加。这项研究介绍了 TOB 作为海马应激信号机制中的重要调节剂。总之,我们揭示了 Tob 缺失导致病理性应激相关行为表达的分子途径和神经回路机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/276f/9338090/ab1429f2fb78/41398_2022_2078_Fig1_HTML.jpg

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