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单细胞基因组学揭示的 ASD 中的分子级联和细胞类型特异性特征。

Molecular cascades and cell type-specific signatures in ASD revealed by single-cell genomics.

机构信息

Program in Neurobehavioral Genetics and Center for Autism Research and Treatment, Semel Institute, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA.

Program in Neurogenetics, Department of Neurology, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Science. 2024 May 24;384(6698):eadh2602. doi: 10.1126/science.adh2602.


DOI:10.1126/science.adh2602
PMID:38781372
Abstract

Genomic profiling in postmortem brain from autistic individuals has consistently revealed convergent molecular changes. What drives these changes and how they relate to genetic susceptibility in this complex condition are not well understood. We performed deep single-nucleus RNA sequencing (snRNA-seq) to examine cell composition and transcriptomics, identifying dysregulation of cell type-specific gene regulatory networks (GRNs) in autism spectrum disorder (ASD), which we corroborated using single-nucleus assay for transposase-accessible chromatin with sequencing (snATAC-seq) and spatial transcriptomics. Transcriptomic changes were primarily cell type specific, involving multiple cell types, most prominently interhemispheric and callosal-projecting neurons, interneurons within superficial laminae, and distinct glial reactive states involving oligodendrocytes, microglia, and astrocytes. Autism-associated GRN drivers and their targets were enriched in rare and common genetic risk variants, connecting autism genetic susceptibility and cellular and circuit alterations in the human brain.

摘要

对自闭症个体死后大脑进行的基因组分析一直揭示出趋同的分子变化。这些变化是由什么驱动的,以及它们与这种复杂疾病的遗传易感性有何关系,目前还不是很清楚。我们进行了深度单细胞 RNA 测序(snRNA-seq),以检查细胞组成和转录组学,确定了自闭症谱系障碍(ASD)中特定细胞类型基因调控网络(GRN)的失调,我们使用单细胞转座酶可及染色质测序(snATAC-seq)和空间转录组学进行了验证。转录组变化主要是细胞类型特异性的,涉及多种细胞类型,最突出的是半球间和胼胝体投射神经元、浅层内的中间神经元,以及涉及少突胶质细胞、小胶质细胞和星形胶质细胞的不同胶质反应状态。与自闭症相关的 GRN 驱动因子及其靶基因在罕见和常见的遗传风险变异中富集,将自闭症遗传易感性与人类大脑中的细胞和回路改变联系起来。

相似文献

[1]
Molecular cascades and cell type-specific signatures in ASD revealed by single-cell genomics.

Science. 2024-5-24

[2]
Transcriptome analysis identifies an ASD-Like phenotype in oligodendrocytes and microglia from C58/J amygdala that is dependent on sex and sociability.

Behav Brain Funct. 2024-6-19

[3]
Cell-type-specific effects of autism-associated 15q duplication syndrome in the human brain.

Am J Hum Genet. 2024-8-8

[4]
Molecular cascades and cell-type specific signatures in ASD revealed by single cell genomics.

bioRxiv. 2023-3-10

[5]
Identification of amygdala-expressed genes associated with autism spectrum disorder.

Mol Autism. 2020-5-27

[6]
Cell-Type-Specific Analysis of Molecular Pathology in Autism Identifies Common Genes and Pathways Affected Across Neocortical Regions.

Mol Neurobiol. 2020-5

[7]
Functional DNA methylation signatures for autism spectrum disorder genomic risk loci: 16p11.2 deletions and CHD8 variants.

Clin Epigenetics. 2019-7-16

[8]
Single-cell genomics identifies cell type-specific molecular changes in autism.

Science. 2019-5-17

[9]
Single cell transcriptomes and multiscale networks from persons with and without Alzheimer's disease.

Nat Commun. 2024-7-10

[10]
Gene Regulation Analysis Reveals Perturbations of Autism Spectrum Disorder during Neural System Development.

Genes (Basel). 2021-11-27

引用本文的文献

[1]
A General Principle of Neuronal Evolution Reveals a Human-Accelerated Neuron Type Potentially Underlying the High Prevalence of Autism in Humans.

Mol Biol Evol. 2025-9-1

[2]
Myelination across the autism spectrum: therapeutic targeting of the oligodendrocyte lineage and myelination defects.

Neuropsychopharmacology. 2025-8-28

[3]
Spatiotemporal Dynamics of Central Nervous System Diseases: Advancing Translational Neuropathology via Single-Cell and Spatial Multiomics.

MedComm (2020). 2025-8-19

[4]
Psychiatric disorders converge on common pathways but diverge in cellular context, spatial distribution, and directionality of genetic effects.

medRxiv. 2025-7-16

[5]
Spatio-molecular gene expression reflects dorsal anterior cingulate cortex structure and function in the human brain.

bioRxiv. 2025-7-17

[6]
Genetic risk effects on psychiatric disorders act in sets.

medRxiv. 2025-7-23

[7]
Integrative analysis identifies IL-6/JUN/MMP-9 pathway destroyed blood-brain-barrier in autism mice via machine learning and bioinformatic analysis.

Transl Psychiatry. 2025-7-11

[8]
Molecular insights into glioblastoma progression: role of CHCHD2P9 in tumor heterogeneity and prognosis.

Front Immunol. 2025-6-24

[9]
Microglia as critical mediators linking perinatal immune stress to mental health trajectories.

Neuropsychopharmacology. 2025-7-9

[10]
Mechanisms of brain overgrowth in autism spectrum disorder with macrocephaly.

Front Neurosci. 2025-6-6

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