De Novo Germline and Somatic Variants Convergently Promote Endothelial-to-Mesenchymal Transition in Simplex Brain Arteriovenous Malformation

Author:

Li Hao12,Nam Yoonhee3,Huo Ran12,Fu Weilun12ORCID,Jiang Biaobin45ORCID,Zhou Qiuxia3,Song Dong3ORCID,Yang Yingxi45,Jiao Yuming12,Weng Jiancong12ORCID,Yan Zihan12,Di Lin67,Li Jie8ORCID,Wang Jie12,Xu Hongyuan12,Wang Shuo12,Zhao Jizong12,Wen Zilong39,Wang Jiguang3410ORCID,Cao Yong1112ORCID

Affiliation:

1. Neurosurgery, Beijing Tiantan Hospital (H.L., R.H., W.F., Y.J., Jiancong Weng, Z.Y., Jie Wang, H.X., S.W., J.Z., Y.C.), Capital Medical University, China.

2. China National Clinical Research Center for Neurological Diseases, Beijing, China (H.L., R.H., W.F., Y.J., Jiancong Weng, Z.Y., Jie Wang, H.X., S.W., J.Z., Y.C.).

3. Division of Life Science, State Key Laboratory of Molecular Neuroscience (Y.N., Q.Z., D.S., Z.W., Jiguang Wang), Clear Water Bay, Kowloon, Hong Kong SAR, China.

4. Chemical and Biological Engineering (B.J., Y.Y., Jiguang Wang), Clear Water Bay, Kowloon, Hong Kong SAR, China.

5. the Hong Kong University of Science and Technology (B.J.,Y.Y.), Clear Water Bay, Kowloon, Hong Kong SAR, China.

6. Beijing Advanced Innovation Center for Genomics, Biomedical Pioneering Innovation Center, Peking-Tsinghua Center for Life Sciences (L.D.), Peking University, Beijing, China.

7. School of Life Sciences (L.D.), Peking University, Beijing, China.

8. School of Life Sciences, Tsinghua-Peking Center for Life Sciences, Tsinghua University, Beijing, China (J.L.).

9. Greater Bay Biomedical Innocenter, Shenzhen Bay Laboratory, Shenzhen, China (Z.W.).

10. Hong Kong Center for Neurodegenerative Diseases, Hong Kong Science Park, Hong Kong SAR, China (Jiguang Wang).

11. Beijing Neurosurgical Institute (Y.C.), Capital Medical University, China.

Abstract

Rationale: Brain arteriovenous malformations (bAVMs) are abnormal entanglement of blood vessels in brain, with direct connections from arteries to veins, lacking functional capillary bed. Although several somatic mutations were reported, the molecular mechanism and genetic disposition of bAVM remain poorly understood. Objective: We aim to identify transcriptional anomalies and critical functional pathways in bAVM lesions and explore their association with key de novo germline and somatic variants in bAVM patients. Methods and Results: We established a comprehensive bAVM dataset from 269 patients, by performing single-cell sequencing of 17 bAVM lesions, whole-exome sequencing of germline DNA from 60 case-unaffected-parental trios, and genomic/transcriptomic sequencing of 231 bAVM lesions. We found abnormal expression of endothelial and mesenchymal markers in bAVM at both bulk and single-cell level, which was validated by flow cytometric analysis and immunofluorescence staining, suggesting an involvement of endothelial-to-mesenchymal transition (EndMT) process in AVM (arteriovenous-malformation). Using data from the 60 trios, we identified nonsynonymous de novo germline mutations affecting 46 genes, including EXPH5 (detected in 2 independent cases), and vessel-related genes, such as EPAS1 and ENG . Interestingly, knockdown of epas1 in zebrafish embryo showed AVM-like phenotype exclusively in brain. Subsequent computational and experimental analyses demonstrated that expression of genes affected by de novo germline mutations was enriched in vascular cell types and was involved in EndMT-relevant behaviors including cell migration, angiogenesis, and cell marker transition. Moreover, we detected somatic KRAS mutations in 129 of 179 (72%) cases and showed that KRAS mutations were associated with bleeding as the first symptom ( P =0.0072). Following experimental studies demonstrated that KRAS mutations independently regulated EndMT features, consolidating the involvement of EndMT in this disease. Lastly, we showed that lovastatin reversed EndMT features in vitro and ex vivo. Conclusions: Our results suggest the convergent role of de novo germline mutations and somatic mutations in regulating EndMT in bAVM and provided a potential therapeutic option.

Funder

Genomics Platform Construction for Chinese Major Brain Disease-AVM

NSFC | Young Scientists Fund

Research Grants Council, University Grants Committee

Innovation and Technology Commission - Hong Kong

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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