Opposing roles of microglial and macrophagic C3ar1 signaling in stress-induced synaptic and behavioral changes

小胶质细胞和巨噬细胞C3ar1信号通路在应激诱导的突触和行为改变中发挥相反的作用

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作者:Ashutosh Tripathi ,Alona Bartosh ,Dania Jose ,Jocelyn Mata ,Usama Hussein ,Fernanda Laezza ,Zhongming Zhao ,Anilkumar Pillai

Abstract

The social deficits following chronic stress conditions are linked to synaptic dysfunction in the brain. Complement system plays a critical role in synapse regulation. Although complement has been implicated in chronic stress-induced behavior deficits the cellular substrates and mechanisms underlying complement-mediated behavior changes under chronic stress conditions are not known. In the present study, we investigated the role of complement component 3a receptor (C3ar1) in microglia and monocytes/macrophages (Mo/MΦ) in chronic unpredictable stress (CUS)-induced synapse loss and behavior deficits in mice. We found that deletion of microglial C3ar1 attenuated stress-induced social behavior deficits and changes in neuroinflammatory as well as synaptic markers in the prefrontal cortex (PFC). RNA sequencing data revealed that microglial C3ar1 deletion attenuates CUS-mediated changes in the expression of immediate-early genes such as Fos and Nuclear Receptor Subfamily 4 Group A Member 1 (Nr4a1) in the PFC. In contrast, lack of C3ar1 in Mo/MΦ induced social behavior deficits. Together, these findings indicate opposite functions of C3ar1 signaling in microglia and Mo/MΦ under chronic stress conditions.

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