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投射靶向光药理学揭示了前额叶-杏仁核和岛叶-杏仁核突触中突触前代谢型谷氨酸受体2(mGluR2)不同的抗焦虑作用。

Projection-targeted photopharmacology reveals distinct anxiolytic roles for presynaptic mGluR2 in prefrontal- and insula-amygdala synapses.

作者信息

Munguba Hermany, Srivastava Ipsit, Gutzeit Vanessa A, Singh Ashna, Vijay Akshara, Kristt Melanie, Arefin Anisul, Thukral Sonal, Broichhagen Johannes, Stujenske Joseph M, Liston Conor, Levitz Joshua

机构信息

Department of Biochemistry, Weill Cornell Medicine, New York, NY 10065, USA; Department of Psychiatry, Weill Cornell Medicine, New York, NY 10065, USA.

Department of Biochemistry, Weill Cornell Medicine, New York, NY 10065, USA.

出版信息

Neuron. 2025 Mar 19;113(6):912-930.e6. doi: 10.1016/j.neuron.2025.01.002. Epub 2025 Jan 28.

Abstract

Dissecting how membrane receptors regulate neural circuits is critical for deciphering principles of neuromodulation and mechanisms of drug action. Here, we use a battery of optical approaches to determine how presynaptic metabotropic glutamate receptor 2 (mGluR2) in the basolateral amygdala (BLA) controls anxiety-related behavior in mice. Using projection-specific photopharmacological activation, we find that mGluR2-mediated presynaptic inhibition of ventromedial prefrontal cortex (vmPFC)-BLA, but not posterior insular cortex (pIC)-BLA, connections produces a long-lasting decrease in spatial avoidance. In contrast, presynaptic inhibition of pIC-BLA connections decreases social avoidance and novelty-induced hypophagia without impairing working memory, establishing this projection as a novel target for the treatment of anxiety disorders. Fiber photometry and viral mapping reveal distinct activity patterns and anatomical organization of vmPFC-BLA and pIC-BLA circuits. Together, this work reveals new aspects of BLA neuromodulation with therapeutic implications while establishing a powerful approach for optical mapping of drug action.

摘要

剖析膜受体如何调节神经回路对于解读神经调节原理和药物作用机制至关重要。在此,我们运用一系列光学方法来确定基底外侧杏仁核(BLA)中的突触前代谢型谷氨酸受体2(mGluR2)如何控制小鼠的焦虑相关行为。通过投影特异性光药理学激活,我们发现mGluR2介导的对腹内侧前额叶皮质(vmPFC)-BLA而非后岛叶皮质(pIC)-BLA连接的突触前抑制会导致空间回避的长期减少。相比之下,对pIC-BLA连接的突触前抑制会减少社交回避和新奇诱导的摄食减少,而不会损害工作记忆,从而将该投射确立为治疗焦虑症的新靶点。光纤光度法和病毒图谱揭示了vmPFC-BLA和pIC-BLA回路不同的活动模式和解剖组织。总之,这项工作揭示了BLA神经调节的新方面及其治疗意义,同时建立了一种强大的药物作用光学映射方法。

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