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The Eph receptor A4 plays a role in demyelination and depression-related behavior
Yuan Li, Ping Su, Yuxiang Chen, Jing Nie, Ti-Fei Yuan, Albert H.C. Wong, Fang Liu
Yuan Li, Ping Su, Yuxiang Chen, Jing Nie, Ti-Fei Yuan, Albert H.C. Wong, Fang Liu
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Research Article Cell biology Neuroscience

The Eph receptor A4 plays a role in demyelination and depression-related behavior

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Abstract

Proper myelination of axons is crucial for normal sensory, motor, and cognitive function. Abnormal myelination is seen in brain disorders such as major depressive disorder (MDD), but the molecular mechanisms connecting demyelination with the pathobiology remain largely unknown. We observed demyelination and synaptic deficits in mice exposed to either chronic, unpredictable mild stress (CUMS) or LPS, 2 paradigms for inducing depression-like states. Pharmacological restoration of myelination normalized both synaptic deficits and depression-related behaviors. Furthermore, we found increased ephrin A4 receptor (EphA4) expression in the excitatory neurons of mice subjected to CUMS, and shRNA knockdown of EphA4 prevented demyelination and depression-like behaviors. These animal data are consistent with the decrease in myelin basic protein and the increase in EphA4 levels we observed in postmortem brain samples from patients with MDD. Our results provide insights into the etiology of depressive symptoms in some patients and suggest that inhibition of EphA4 or the promotion of myelination could be a promising strategy for treating depression.

Authors

Yuan Li, Ping Su, Yuxiang Chen, Jing Nie, Ti-Fei Yuan, Albert H.C. Wong, Fang Liu

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Figure 7

Specific knockdown EphA4 expression in excitatory neurons can rescue the depressive phenotypes in mice induced by CUMS.

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Specific knockdown EphA4 expression in excitatory neurons can rescue the...
(A) EphA4 was mainly colabeled with Vglut1 in the ventral hippocampus of normal mice. (B) EphA4 expression in excitatory neurons was markedly increased by CUMS. Scale bars: 50 μm (n = 5 mice/group). (C) Diagram outlining the layout of the AAV shRNA vector used and the experimental timeline. (D) Representative images demonstrating that the AAV vectors can specifically infect excitatory neurons in the ventral hippocampus. Scale bar: 1 mm. (E) Knockdown efficiency of EphA4 shRNA vectors. (F) Increased levels of EphA4 in CUMS mice were restored by EphA4 shRNA treatment [n = 4–5 brains/group, F (2, 10) = 8.812 ]. (G–I) Behavioral effects of EphA4 knockdown in excitatory neurons in the (G) SPT [F (2, 31) = 5.814]; (H) OFT [F (2, 32) = 5.210]); and (I) TST [F (2, 32) = 14.18] in CUMS mice (n = 11–12 mice/group). *P < 0.05, **P < 0.01, ***P < 0.001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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