Evidence map›Paper›PMID 42526765›Full record

ArticleMolecules and cells2026

USP15 mutation associated with autism spectrum disorder alters progenitor fate and neuronal maturation in human brain organoids.

Tae-Hwan Park, In Gyeong Koh, Seoyoung Sung, Hayoon Park, Jieun Kim, Sebin Lee, Yun Jin Lee, Hyunsoo Ko, Jae Hyun Han, Guiyoung Bong and 4 more

Abstract read
In one paragraph

Article in Molecules and cells, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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0citing papers in PubMed
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1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

14 authors.

Tae-Hwan ParkDepartment of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul, Republic of Korea; Department of Translational Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.
In Gyeong KohL-HOPE Program for Community-Based Total Learning Health Systems, Korea University, Seoul, Republic of Korea; Department of Integrated Biomedical and Life Science, Korea University, Seoul, Republic of Korea; National Research Laboratory for Convergence Degradation Biology, Korea University, Seoul, Republic of Korea.
Seoyoung SungDepartment of Life Science, Ewha Womans University, Seoul, Republic of Korea.
Hayoon ParkSchool of Biosystem and Biomedical Science, College of Health Science, Korea University, Seoul, Republic of Korea.
Jieun KimDepartment of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul, Republic of Korea; Department of Biochemistry & Molecular Biology, Faculty of Medicine, University of British Columbia, Vancouver, British Columbia V6T 1Z4, Canada; Terry Fox Laboratory, British Columbia Cancer Research Institute, Vancouver, British Columbia V5Z 1L3, Canada.
Sebin LeeDepartment of Life Science, Ewha Womans University, Seoul, Republic of Korea.
Yun Jin LeeDepartment of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul, Republic of Korea.
Hyunsoo KoDepartment of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul, Republic of Korea.
Jae Hyun HanDepartment of Psychiatry, Seoul National University Bundang Hospital, Seongnam, Republic of Korea; Department of Psychiatry, Seoul National University College of Medicine, Seoul, Republic of Korea.
Guiyoung BongDepartment of Psychiatry, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.
Hee Jeong YooDepartment of Psychiatry, Seoul National University Bundang Hospital, Seongnam, Republic of Korea; Department of Psychiatry, Seoul National University College of Medicine, Seoul, Republic of Korea.
Jaesang KimDepartment of Life Science, Ewha Womans University, Seoul, Republic of Korea. Electronic address: jkim1964@ewha.ac.kr.
Joon-Yong AnL-HOPE Program for Community-Based Total Learning Health Systems, Korea University, Seoul, Republic of Korea; Department of Integrated Biomedical and Life Science, Korea University, Seoul, Republic of Korea; National Research Laboratory for Convergence Degradation Biology, Korea University, Seoul, Republic of Korea; School of Biosystem and Biomedical Science, College of Health Science, Korea University, Seoul, Republic of Korea. Electronic address: joonan30@korea.ac.kr.
Ji Yeoun LeeDepartment of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul, Republic of Korea; Department of Translational Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea; Division of Pediatric Neurosurgery, Seoul National University Children's Hospital, Seoul, Republic of Korea. Electronic address: ddang1@snu.ac.kr.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

De novo variants in the ubiquitin-proteasome pathway are linked to autism spectrum disorder (ASD), yet their functional impact on neurodevelopment remains poorly understood. We investigated USP15, a deubiquitinating enzyme with rare damaging variants identified in individuals with ASD, using isogenic human iPSC-derived brain organoids and single-cell transcriptomics. USP15 mutant organoids showed genotype-dependent, progenitor-centered alterations during corticogenesis. Heterozygous organoids modeling haploinsufficiency displayed a shift toward later pseudotime states together with altered maturation and synaptic organization of deep-layer neurons. In contrast, homozygous organoids showed broader phenotypes, including mitotic suppression, aberrant HOX gene expression, and stress-response activation. Regulon analysis showed reduced activity of progenitor-associated regulons, including SOX2, NR2F1, and NR2F2, in heterozygous organoids, whereas homozygous organoids exhibited broader changes in transcriptional regulatory networks. Furthermore, USP15 mutant-associated gene expression patterns were significantly enriched for established ASD risk genes. Comparison with the mouse brain perturbation atlas showed that the transcriptional signature of the USP15 mutant showed notable overlap with those of Fezf2 and Foxp1 mutants, key regulators of deep-layer projection neuron identity. These findings characterize genotype-dependent neurodevelopmental phenotypes associated with reduced USP15 dosage and provide a human neural framework for investigating ASD-relevant developmental mechanisms in the context of a rare ubiquitin-pathway variant.

Indexed as

Autism Spectrum DisorderBrainMutationNeuronsOrganoidsUbiquitin-Specific ProteasesAnimalsHumansInduced Pluripotent Stem CellsMiceNeurodevelopmentUbiquitin-Specific ProteasesUSP15 protein, humanCorticogenesisDeubiquitinaseHaploinsufficiencyNeurodevelopmental disordersTranscriptome

Identifiers

PMID42526765
PMCPMC13499480

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.