Somatic MAP3K3 and PIK3CA mutations in sporadic cerebral and spinal cord cavernous malformations

Author:

Hong Tao1,Xiao Xiao2,Ren Jian1,Cui Bing2,Zong Yuru2,Zou Jian3,Kou Zqi3,Jiang Nan1,Meng Guolu1,Zeng Gao1ORCID,Shan Yongzhi1,Wu Hao1,Chen Zan1,Liang Jiantao1,Xiao Xinru1,Tang Jie1,Wei Yukui1,Ye Ming1,Sun Liyong1,Li Guilin1,Hu Peng1,Hui Rutai2,Zhang Hongqi1,Wang Yibo2ORCID

Affiliation:

1. Department of Neurosurgery, Xuanwu Hospital, Capital Medical University, China International Neuroscience Institute, Beijing, China

2. State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China

3. The Institute of Translational Medicine, Zhejiang University, Hangzhou 310058, China

Abstract

Abstract Cavernous malformations affecting the CNS occur in ∼0.16–0.4% of the general population. The majority (85%) of cavernous malformations are in a sporadic form, but the genetic background of sporadic cavernous malformations remains enigmatic. Of the 81 patients, 73 (90.1%) patients were detected carrying somatic missense variants in two genes: MAP3K3 and PIK3CA by whole-exome sequencing. The mutation spectrum correlated with lesion size (P = 0.001), anatomical distribution (P < 0.001), MRI appearance (P = 0.004) and haemorrhage events (P = 0.006). PIK3CA mutation was a significant predictor of overt haemorrhage events (P = 0.003, odds ratio = 11.252, 95% confidence interval = 2.275–55.648). Enrichment of endothelial cell population was associated with a higher fractional abundance of the somatic mutations. Overexpression of the MAP3K3 mutation perturbed angiogenesis of endothelial cell models in vitro and zebrafish embryos in vivo. Distinct transcriptional signatures between different genetic subgroups of sporadic cavernous malformations were identified by single cell RNA sequencing and verified by pathological staining. Significant apoptosis in MAP3K3 mutation carriers and overexpression of GDF15 and SERPINA5 in PIK3CA mutation carriers contributed to their phenotype. We identified activating MAP3K3 and PIK3CA somatic mutations in the majority (90.1%) of sporadic cavernous malformations and PIK3CA mutations could confer a higher risk for overt haemorrhage. Our data provide insights into genomic landscapes, propose a mechanistic explanation and underscore the possibility of a molecular classification for sporadic cavernous malformations.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

Chinese Academy of Medical Sciences

Innovation Fund for Medical Sciences Health and Longevity Pilot Project

Beijing Municipal Science and Technology Commission

Beijing Municipal Administration of Hospitals

Beijing Municipal Education Commission

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

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