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Updated: Apr 3, 2026

Large-scale Three-dimensional Imaging of Cellular Organization in the Mouse Neocortex
Published on: September 5, 2018
Characterization of functional human-specific regulatory elements in prefrontal cortical cells
Bufan Jin1, Langjian Zhu2, Huizhong Chang3
1State Key Laboratory of Genome and Multi-omics Technologies, BGI Research, Hangzhou 310030, China; College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
None:
Understanding how human-specific cis-regulatory elements (CREs) drive gene expression in the adult brain remains elusive. Here, we profile the prefrontal cortex (PFC) of adult human, macaque, and mouse using single-nucleus transcriptomic (106,266 cells) and genome-wide chromatin accessibility (212,099 cells) assays, showing human-specific gene expression and chromatin accessibility. We find that human-specific candidate CREs (cCREs) are central in modulating human-biased expression, and those unique to the human genome are enriched with transposable elements such as endogenous retrovirus-K (ERVK) and long interspersed nuclear element 1 (LINE-1), suggesting a role in regulatory innovation during PFC evolution. Genome-wide association analyses indicate strong neuropsychiatric relevance of human-gained accessibility, and machine learning prioritizes disorder-associated single-nucleotide polymorphisms within these cCREs as potential functional variants influencing disease-risk genes, likely via altered transcription factor binding. In all, our findings provide distinct characteristics of human-specific transcriptional regulation and, simultaneously, a critical insight into evolution and pathological significance of human-specific gene regulation in the adult PFC.
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