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Updated: Sep 6, 2026

A Time-Efficient Fluorescence Spectroscopy-Based Assay for Evaluating Actin Polymerization Status in Rodent and Human Brain Tissues
Published on: June 3, 2021
YTHDF1 modulates CAP1-mediated actin turnover to regulate synaptic function and anxiodepressive-like behaviors
Xidan Zhou1,2,3, Si Li4,5,6, Chen Guo7
1Faculty of Life and Health Sciences, Shenzhen University of Advanced Technology, Shenzhen, 518106, China. xd.zhou@siat.ac.cn.
Abstract:
Neuroplasticity and synaptic dysfunction are central to the pathophysiology of depression, yet their underlying mechanisms remain not fully understood. Here, we identify the m6A 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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