The intracellular domain of CX3CL1 regulates adult neurogenesis and Alzheimer’s amyloid pathology

Author:

Fan Qingyuan1,Gayen Manoshi12,Singh Neeraj2,Gao Fan3,He Wanxia12,Hu Xiangyou12,Tsai Li-Huei3,Yan Riqiang12ORCID

Affiliation:

1. Department of Neurosciences, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH

2. Department of Neuroscience, University of Connecticut Health, Farmington, CT

3. The Picower Institute for Learning and Memory, Massachusetts Institute of Technology, Cambridge, MA

Abstract

The membrane-anchored CX3CL1 is best known to exert its signaling function through binding its receptor CX3CR1. This study demonstrates a novel function that CX3CL1 exerts. CX3CL1 is sequentially cleaved by α-, β-, and γ-secretase, and the released CX3CL1 intracellular domain (CX3CL1-ICD) would translocate into the cell nucleus to alter gene expression due to this back-signaling function. Amyloid deposition and neuronal loss were significantly reduced when membrane-anchored CX3CL1 C-terminal fragment (CX3CL1-ct) was overexpressed in Alzheimer’s 5xFAD mouse model. The reversal of neuronal loss in 5xFAD can be attributed to increased neurogenesis by CX3CL1-ICD, as revealed by morphological and unbiased RNA-sequencing analyses. Mechanistically, this CX3CL1 back-signal likely enhances developmental and adult neurogenesis through the TGFβ2/3-Smad2/3 pathway and other genes important for neurogenesis. Induction of CX3CL1 back-signaling may not only be a promising novel mechanism to replenish neuronal loss but also for reducing amyloid deposition for Alzheimer’s treatment.

Funder

National Institutes of Health

National Institute on Aging

JPB Foundation

Robert A. and Rene E. Belfer Family Foundation

Alana Foundation

Cure Alzheimer’s Fund

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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