后代
生物
昼夜节律
小RNA
合子
物候学
微量注射
表观遗传学
精子
染色质
下调和上调
生物钟
海马结构
遗传学
生殖系
神经科学
认知
细胞生物学
内分泌学
单倍率不足
作者
Kexin Zou,Sisi Luo,Binliang Tang,Liu Z,Yuchuan Zhou,Yu Meng,Zhengmu Wu,Zheng Sun,Weihui Shi,JianZhong Sheng,Chuanjin Yu,Z Li,Siyi Wei,Mo Zhang,Yujie Luo,Jing Yan,Xueyun Qin,Jiahang Mo,Chengliang Zhou,Jinsong Li
标识
DOI:10.1002/advs.202514510
摘要
A father's lifestyle can impact offspring's health. However, it is unclear whether and how paternal circadian rhythm disruption affects offspring neural development and cognitive function. Here, we show that male mice exposed to constant light (LL-F0) led to memory dysfunction and impaired hippocampal synaptic plasticity in male, but not female, F1 offspring (LL-F1). Paternal circadian disruption altered expression profiles of small RNAs, especially microRNAs (miRNAs), in mouse sperm. These miRNA changes were associated with chromatin accessible regions in spermatogonial stem cells, pointing to an early germline origin of the disrupted epigenetic state. In human sperm, we identified and validated upregulation of miR-92a-3p. Microinjection of total small RNAs from LL-F0 sperm or synthetic miR-92a-3p/miR-25-3p into zygotes was sufficient to phenocopy offspring cognitive impairment, whereas inhibition of these miRNAs in zygotes partially reversed the phenotype. These findings support a role for sperm-borne miRNAs in the intergenerational transmission of neurobehavioral deficits induced by paternal circadian disruption.
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