Hippocampal Zkscan4 confers resilience to chronic stress-induced depression-like behaviors.

Gao, Kai; Yang, Yang; Sun, Xiaoxuan; Wang, Jinxin; Sun, Xiaqin; Lu, Tianlan; Wang, Lifang; Li, Ming et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Major depression is a prevalent and devastating psychiatric disorder. However, our understanding of the underlying molecular mechanisms is limited. Here, we found reduced expression of zinc finger protein with Krüppel-associated box and SCAN domains 4 (Zkscan4) in the hippocampi of patients with major depressive disorder and stress-susceptible mice. Zkscan4 disruption (<i>Zkscan4<sup>-/-</sup></i>) was sufficient to induce depression-like behaviors following subthreshold social stress. Zkscan4 regulated excitatory synaptic transmission mainly through direct interaction with the <i>Htr2a</i> promoter and the recruitment of glucocorticoid receptors for the transcriptional repression of 5-hydroxytryptamine receptor 2a (Htr2a). Reduced excitatory synaptic transmission in the hippocampus and stress susceptibility in <i>Zkscan4<sup>-/-</sup></i> mice were restored by pharmacological inhibition, genetic knockdown of Htr2a, or overexpression of the amino-terminal SCAN domain of Zkscan4 (Zkscan4<sub>1-133</sub>) in cornus ammonis region 3. Our findings demonstrate an essential role of Zkscan4 in promoting stress resilience, suggesting a potential antidepressant effect of Zkscan4<sub>1-133</sub>.

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