IGF2BP1 in 17q-gain cooperates with MYCN to regulate purine biosynthesis and immunotherapy efficacy in neuroblastoma

Concurrent chromosomal 17q-gain and MYCN amplification define a subset of neuroblastoma associated with particularly adverse clinical outcomes. However, how these genetic alterations synergize to promote tumor progression and whether their cooperation confers therapeutic vulnerabilities remain elusive. We herein performed a CRISPR-based functional screen targeting 17q-gain genes and identified the RNA m 6 A reader IGF2BP1 as a critical MYCN collaborator to promote aggressive neuroblastomas via activation of phosphoribosylaminoimidazole succinocarboxamide synthetase (PAICS), a key enzyme involved in de novo purine biosynthesis. Rewiring of PAICS-mediated nucleotide metabolism enabled tumor cells to sustain necessary purine pools for productive transcription of replicative stress-responsive genes, including CHK1 , to cope with the exacerbated replication stress. Pharmacological inhibition of CHK1 elicited a robust immune reprogramming, leading to activation of cGAS–STING signaling, upregulation of Major Histocompatibility Complex class I expression, and synergistic tumor suppression with immune checkpoint blockade. Altogether, we identify an IGF2BP1/MYCN–PAICS–CHK1 axis that drives aggressive neuroblastoma phenotypes and constitutes an actionable vulnerability for therapeutic intervention.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-10-09
DOI
https://doi.org/10.1073/pnas.2524540123
Primary Topic
Neuroblastoma Research and Treatments
Type
article
Field-Weighted Citation Impact
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article

IGF2BP1 in 17q-gain cooperates with MYCN to regulate purine biosynthesis and immunotherapy efficacy in neuroblastoma

YU Lihui, Pei Zeng, Baishan Jiang, Hudan Liu et al.
Proceedings of the National Academy of Sciences
Neuroblastoma Research and Treatments
article

IGF2BP1 in 17q-gain cooperates with MYCN to regulate purine biosynthesis and immunotherapy efficacy in neuroblastoma

YU Lihui, Pei Zeng, Baishan Jiang, Hudan Liu, Guoliang Qing, Yu Liu, Honghong Wang, Jinfang Zhang, Yingzhe Fang, Hao Huang, Rongrong Fan, Jiaxu Liu, Kaiwei Liang, Qianqian Yuan, Mingyue Zhao, Zhinang Yin, Fan Yang, Ganggang Song
article en

Abstract

Concurrent chromosomal 17q-gain and MYCN amplification define a subset of neuroblastoma associated with particularly adverse clinical outcomes. However, how these genetic alterations synergize to promote tumor progression and whether their cooperation confers therapeutic vulnerabilities remain elusive. We herein performed a CRISPR-based functional screen targeting 17q-gain genes and identified the RNA m 6 A reader IGF2BP1 as a critical MYCN collaborator to promote aggressive neuroblastomas via activation of phosphoribosylaminoimidazole succinocarboxamide synthetase (PAICS), a key enzyme involved in de novo purine biosynthesis. Rewiring of PAICS-mediated nucleotide metabolism enabled tumor cells to sustain necessary purine pools for productive transcription of replicative stress-responsive genes, including CHK1 , to cope with the exacerbated replication stress. Pharmacological inhibition of CHK1 elicited a robust immune reprogramming, leading to activation of cGAS–STING signaling, upregulation of Major Histocompatibility Complex class I expression, and synergistic tumor suppression with immune checkpoint blockade. Altogether, we identify an IGF2BP1/MYCN–PAICS–CHK1 axis that drives aggressive neuroblastoma phenotypes and constitutes an actionable vulnerability for therapeutic intervention.

Proceedings of the National Academy of SciencesVol. 123(41)
Wuhan University (CN), Shanghai Children's Medical Center (CN), Zhongnan Hospital of Wuhan University (CN)
Openalex Percentile: Top 13%
Neuroblastoma Research and Treatments
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