A LINE-1 insertion upstream of FOXP2 promotes neuronal differentiation during primate evolution

生物 后转座子 FOXP2型 染色质 转录因子 人类遗传学 染色体构象捕获 遗传学 进化生物学 狨猴 基因组 灵长类动物 神经科学 基因表达调控 基因调控网络 染色质免疫沉淀 灵长类学 基因 基因座(遗传学) 胚胎干细胞 抄写(语言学) 人类基因组 脊椎动物 功能(生物学) 计算生物学 轨迹控制区 发育生物学 19号染色体
作者
Jinhao Liu,Zihang Yin,Yonglin Peng,Shuang Cui,Bo Shi,X W Jiang,Ziyi Yang,Sijie Gu,Yude Lin,Lingfeng Xu,Zhen Xu,Xuankai Wang,Tienan Chen,Wei Zhang,Shaojiao Wang,Zhiwei Xiao,Zhibo Huang,Rujiang Zhou,Zhengju Yao,Xiaodong Zhao
出处
期刊:Genome Biology [BioMed Central]
标识
DOI:10.1186/s13059-026-04098-8
摘要

BACKGROUND: The evolutionary trajectory of FOXP2, a key regulator of language acquisition and higher-order cognitive function, remains incompletely understood. Retrotransposons such as long interspersed element-1 (LINE-1) are recognized as important contributors to genome regulation, influencing embryonic and neuronal developmental programs. However, the potential contribution of LINE-1 to shaping the cis-regulatory landscape of FOXP2 remains unclear. RESULTS: Through comparative evolutionary genomic analyses, we identify a locus positioned 342 kb upstream of the FOXP2 transcription start site that has experienced multiple, successive LINE-1 retrotransposition events during primate evolution. This process produces a 10.6 kb composite LINE-1 element present in both human and chimpanzee genomes, which we designate FOXP2-342L1. This element exhibits moderate signals of recent positive selection in modern human populations and resides near a topologically associating domain boundary within the FOXP2 regulatory landscape. Integrative 3D genome mapping in human and marmoset neural stem cell models demonstrates that FOXP2-342L1 mediates long range chromatin interactions across the FOXP2 cis regulatory domain. Notably, FOXP2-342L1 functions as an evolutionary "hub" that accumulates successive LINE-1 insertions during primate evolution, thereby regulating FOXP2 activity and promoting cortical neuron differentiation. CONCLUSION: Our findings uncover a LINE-1 driven reconfiguration of 3D chromatin architecture within the FOXP2 regulatory landscape and reveal a primate specific model of neuronal development shaped by retrotransposon activity during primate evolution.
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