Mutations of RNF213 are responsible for sporadic cerebral cavernous malformation and lead to a mulberry-like cluster in zebrafish

Author:

Lin Jing1ORCID,Liang Jie1ORCID,Wen Jun2ORCID,Luo Man3ORCID,Li Jiaoxing1ORCID,Sun Xunsha1ORCID,Xu Xiaowei4ORCID,Li Jianli3ORCID,Wang Dongxian5ORCID,Wang Jie5ORCID,Chen Huimin1ORCID,Lai Rong1ORCID,Liang Fengyin1ORCID,Li Chuan5ORCID,Ye Fei1ORCID,Zhang Jingjing6ORCID,Zeng Jinsheng1,Yang Shulan5ORCID,Sheng Wenli1ORCID

Affiliation:

1. Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory for Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, Guangzhou, China

2. Department of Neurology, Jiangmen Central Hospital, Jiangmen, China

3. Department of Neurology, The First Affiliated Hospital, Guangxi Medical University, Nanning, China

4. Department of Neurology, The Seventh Affiliated Hospital, Sun Yat-sen University, Shenzhen, China

5. Translational Medicine Centre, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China

6. Affiliated Hospital of Guangdong Medical University, Zhanjiang, China

Abstract

Although familial forms of cerebral cavernous malformation are mainly attributed to three CCM genes ( KRIT1, CCM2 and PDCD10), no mutation is identified in sporadic cerebral cavernous malformation cases with a unique lesion, indicating additional genes for sporadic cerebral cavernous malformation. To screen the candidate genes, we conducted whole exome sequencing in 31 sporadic cerebral cavernous malformation patients and 32 healthy controls, and identified 5 affected individuals carrying 6 heterozygous deleterious mutations in RNF213 but no RNF213 mutation in healthy individuals. To further confirm RNF213 was associated with cerebral cavernous malformation, we generated rnf213a homozygous knockout zebrafish and found mutation of rnf213a in zebrafish led to a mulberry-like cluster of disordered-flow vascular channels which was reminiscent of human cerebral cavernous malformation. In addition, we revealed kbtbd7 and anxa6 were significantly downregulated due to rnf213a mutation through transcriptomic sequencing and RT-qPCR analysis. Based on the mulberry-like phenotype partly rescued by mRNA of kbtbd7 as well as anxa6, we suggested that rnf213a promoted mulberry-like cluster via downregulation of kbtbd7 and anxa6. Altogether, we firstly demonstrate RNF213is a novel candidate gene for sporadic cerebral cavernous malformation and the mutation of rnf213a is responsible for the mulberry-like cluster in zebrafish.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Clinical Neurology,Neurology

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