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快速生成用于分泌性嗜铬细胞瘤和副神经节瘤的sdhb功能丧失斑马鱼模型。

Rapid generation of a sdhb loss-of-function zebrafish model for secreting pheochromocytomas and paragangliomas.

作者信息

Parisien-La Salle S, Nobilleau F, da Silva Babinet A, Lamontagne J, Labrecque M, Rampal B, Mas C, Liao M, Barragan Torres V A, Corbeil G, Chatel-Chaix L, Dona M, Tétreault M, Bourdeau I, Samarut É

机构信息

Division of Endocrinology, Department of Medicine, Centre Hospitalier de l'Université de Montréal (CHUM), Montreal, QC, Canada.

University of Montréal Hospital Research Center (CRCHUM), Montreal, QC, Canada.

出版信息

NPJ Genom Med. 2025 Aug 11;10(1):59. doi: 10.1038/s41525-025-00518-z.

Abstract

Genotype plays a central role in the comprehensive management of pheochromocytomas and paragangliomas, highlighting the critical need for specific in vivo genetic models. Yet, animal models fall short of fully recapitulating the biological complexity of these tumours. We generated first-generation loss-of-function zebrafish models for sdhb, a canonical PPGL-associated gene, using CRISPR/Cas9. Sdhb-CRISPants exhibit increased heart rates, reduced swimming activity and premature death. In whole fish extracts, normetanephrine (NM), metanephrine (MN), and dopamine (DA) levels were about three times higher in sdhb CRISPants than in control larvae. In the bathing medium, NM and MN were also significantly elevated, along with 3-MT. Complementary metabolic and transcriptomic profiling revealed that sdhb CRISPants exhibit a clear signature of Complex II dysfunction and upregulation of genes involved in the hypoxia response, angiogenesis, stress response, and glycolysis. Our work validates the relevance of CRISPant zebrafish models to study the pathogenicity of PPGL-causing genetic variants in vivo.

摘要

基因型在嗜铬细胞瘤和副神经节瘤的综合管理中起着核心作用,这凸显了对特定体内遗传模型的迫切需求。然而,动物模型无法完全重现这些肿瘤的生物学复杂性。我们使用CRISPR/Cas9技术,为一种典型的与副神经节瘤相关的基因sdhb构建了第一代功能缺失型斑马鱼模型。携带sdhb基因编辑的斑马鱼表现出心率加快、游泳活动减少和过早死亡。在全鱼提取物中,去甲变肾上腺素(NM)、变肾上腺素(MN)和多巴胺(DA)水平在携带sdhb基因编辑的斑马鱼中比对照幼虫高出约三倍。在培养基中,NM和MN以及3 - 甲基酪氨酸(3 - MT)也显著升高。互补的代谢和转录组分析表明,携带sdhb基因编辑的斑马鱼表现出明显的复合物II功能障碍特征,以及参与缺氧反应、血管生成、应激反应和糖酵解的基因上调。我们的工作验证了携带基因编辑的斑马鱼模型在体内研究导致副神经节瘤的遗传变异致病性方面的相关性。

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