YTHDF1 modulates CAP1-mediated actin turnover to regulate synaptic function and anxiodepressive-like behaviors

A reader protein YTHDF1 as a key regulator of depression pathogenesis. Mice with genetic deletion of Ythdf1 exhibited anterior cingulate cortex (ACC) hyperactivity, hyperalgesia, heightened social stress sensitivity, and anxiodepressive-like behaviors following acute social stress. Using multi-omics approaches, we linked these effects to dysregulated actin cytoskeleton dynamics and identified cyclase-associated protein 1 (CAP1) as a downstream effector of YTHDF1. YTHDF1 deficiency reduced CAP1 expression from early postnatal stages, leading to F-actin accumulation, impaired synaptic function, and behavioral deficits. Strikingly, early postnatal re-expression of YTHDF1 in the ACC normalized CAP1 levels, restored synaptic integrity, and reversed depressive-like phenotypes. Similarly, CAP1 re-expression was sufficient to alleviate stress-induced psychomotor retardation and anxiety. Our findings establish the YTHDF1-CAP1 axis as a critical pathway governing synaptic function and depressive behaviors.

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Journal
Molecular Psychiatry
Published
2026-09-04
DOI
https://doi.org/10.1038/s41380-026-03840-9
Primary Topic
14-3-3 protein interactions
Type
article
Field-Weighted Citation Impact
0.00

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article

YTHDF1 modulates CAP1-mediated actin turnover to regulate synaptic function and anxiodepressive-like behaviors

Chen Guo, Yihui Cui, 周喜丹, Min Wu et al.
Molecular Psychiatry
14-3-3 protein interactions
article

YTHDF1 modulates CAP1-mediated actin turnover to regulate synaptic function and anxiodepressive-like behaviors

Chen Guo, Yihui Cui, 周喜丹, Min Wu, Tao Zhou, Songfen Wu, Cuiting Wu, Kuan Li, Xiaoli Wu, Si Li
article en

Abstract

A reader protein YTHDF1 as a key regulator of depression pathogenesis. Mice with genetic deletion of Ythdf1 exhibited anterior cingulate cortex (ACC) hyperactivity, hyperalgesia, heightened social stress sensitivity, and anxiodepressive-like behaviors following acute social stress. Using multi-omics approaches, we linked these effects to dysregulated actin cytoskeleton dynamics and identified cyclase-associated protein 1 (CAP1) as a downstream effector of YTHDF1. YTHDF1 deficiency reduced CAP1 expression from early postnatal stages, leading to F-actin accumulation, impaired synaptic function, and behavioral deficits. Strikingly, early postnatal re-expression of YTHDF1 in the ACC normalized CAP1 levels, restored synaptic integrity, and reversed depressive-like phenotypes. Similarly, CAP1 re-expression was sufficient to alleviate stress-induced psychomotor retardation and anxiety. Our findings establish the YTHDF1-CAP1 axis as a critical pathway governing synaptic function and depressive behaviors.

Molecular Psychiatry
Kunming Institute of Zoology (CN), Sir Run Run Shaw Hospital (CN), Southern University of Science and Technology (CN), HKUST Shenzhen Research Institute (CN), Shenzhen University Health Science Center (CN), Shenzhen Institutes of Advanced Technology (CN), Shenzhen Technology University (CN), University of Chinese Academy of Sciences (CN)
National Natural Science Foundation of China, Shenzhen Science and Technology Innovation Program
Openalex Percentile: Top 17%
14-3-3 protein interactions
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