Duplication 15q (dup15q) syndrome is a leading genetic cause of autism spectrum disorder, offering a key model for studying autism-related mechanisms. Using single-cell and single-nucleus RNA sequencing of cortical organoids from dup15q patient-derived iPSCs and post-mortem brain samples, we identify increased glycolysis, disrupted layer-specific marker expression, and aberrant morphology in deep-layer neurons during fetal-stage organoid development. In adolescent-adult postmortem brains, upper-layer neurons exhibit heightened transcriptional burden related to synaptic signaling, a pattern shared with idiopathic autism. Using spatial transcriptomics, we confirm these cell-type-specific disruptions in brain tissue. By gene co-expression network analysis, we reveal disease-associated modules that are well preserved between postmortem and organoid samples, suggesting metabolic dysregulation that may lead to altered neuron projection, synaptic dysfunction, and neuron hyperexcitability in dup15q syndrome.
Single-cell analysis of dup15q syndrome reveals developmental and postnatal molecular changes in autism.
对 dup15q 综合征的单细胞分析揭示了自闭症的发育和出生后分子变化
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作者:Perez Yonatan, Velmeshev Dmitry, Wang Li, White Matthew L, Siebert Clara, Baltazar Jennifer, Zuo Guolong, Moriano Juan Andrés, Chen Songcang, Steffen David M, Dutton Natalia Garcia, Wang Shaohui, Wick Brittney, Haeussler Maximilian, Chamberlain Stormy, Alvarez-Buylla Arturo, Kriegstein Arnold
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 4; 16(1):6177 |
| doi: | 10.1038/s41467-025-61184-4 | 研究方向: | 发育与干细胞、细胞生物学 |
| 疾病类型: | 自闭症 | ||
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