生物技术进展 ›› 2025, Vol. 15 ›› Issue (3): 418-425.DOI: 10.19586/j.2095-2341.2024.0206

• 进展评述 • 上一篇    下一篇

自闭症与染色质三维结构关系的研究进展

高海明(), 张媛媛, 何蓉()   

  1. 中国医科大学附属盛京医院临床遗传科,沈阳 110004
  • 收稿日期:2024-12-24 接受日期:2025-02-27 出版日期:2025-05-25 发布日期:2025-07-01
  • 通讯作者: 何蓉
  • 作者简介:高海明 E-mail: gaohm@sj-hospital.org
  • 基金资助:
    辽宁省民生科技计划项目(2021JH2/10300121)

The Research Progress on the Relationship Between Autism and the Three-dimensional Structure of Chromosomes

Haiming GAO(), Yuanyuan ZHANG, Rong HE()   

  1. Department of Clinical Genetics,Shengjing Hospital,China Medical University,Shenyang 110004,China
  • Received:2024-12-24 Accepted:2025-02-27 Online:2025-05-25 Published:2025-07-01
  • Contact: Rong HE

摘要:

自闭症谱系障碍(autism spectrum disorder,ASD)是一种发病率在1%~2%的复杂神经系统疾病,其发病具有显著的遗传异质性。三维基因组学研究揭示了染色质空间拓扑结构的动态调控在ASD病理机制中的核心作用,尤其是拓扑关联结构域(topologically associated domains,TADs)的边界破坏或内部互作紊乱,可通过表观遗传重编程导致神经发育关键基因的时空表达失调。然而,目前对ASD相关三维基因组变异尚未得到系统性解析以及现有临床诊断体系缺乏对三维基因组标志物的整合应用。系统综述了TADs介导的染色质区室化调控在ASD神经发展中的分子机制,总结了高通量染色体构象捕获技术(high-throughput chromosome conformation capture,Hi-C)及其衍生方法在ASD三维表观基因组图谱构建中的技术创新,以期为ASD的早期分子分型及靶向治疗提供理论支撑和技术范式。

关键词: 染色质三维结构, 自闭症谱系障碍, 拓扑关联结构域, 非编码区变异, Hi-C技术

Abstract:

Autism spectrum disorder (ASD) is a complex neurological disorder with an incidence rate of 1% to 2%, characterized by significant genetic heterogeneity. Three-dimensional genomics research has revealed the core role of dynamic regulation of chromatin spatial topology in the pathological mechanism of ASD, especially the disruption of boundaries or internal interactions within topologically associated domains (TADs), which could lead to spatiotemporal expression dysregulation of key neurodevelopmental genes through epigenetic reprogramming. However,ASD-related three-dimensional genomic variations related has not been systematically clarified and the existing clinical diagnostic system lacks the integrated application of three-dimensional genomic markers. The article systematically reviewed the molecular mechanisms of TAD-mediated chromatin compartmentalization regulation in ASD neurodevelopment and summarized the technological innovations of high-throughput chromosome conformation capture technology (Hi-C) and its derivative methods in the construction of three-dimensional epigenomic maps of ASD, in order to provide theoretical support and technical paradigms for the early molecular typing and targeted treatment of ASD.

Key words: chromosome three-dimensional structure, autism spectrum disorder, topologically associated domains, non-coding region variation, Hi-C technology

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