Skip to main content
Download PDF
- Main
Somatic Variants in SVIL in Cerebral Aneurysms
- Lai, Pui Man Rosalind;
- Ryu, Jee-Yeon;
- Park, Sang-Cheol;
- Gross, Bradley A;
- Dickinson, Lawrence D;
- Dagen, Sarajune;
- Aziz-Sultan, Mohammad Ali;
- Boulos, Alan S;
- Barrow, Daniel L;
- Batjer, H Hunt;
- Blackburn, Spiros;
- Chang, Edward F;
- Chen, P Roc;
- Colby, Geoffrey P;
- Cosgrove, Garth Rees;
- David, Carlos A;
- Day, Arthur L;
- Frerichs, Kai U;
- Niemela, Mika;
- Ojemann, Steven G;
- Patel, Nirav J;
- Shi, Xiangen;
- Valle-Giler, Edison P;
- Wang, Anthony C;
- Welch, Babu G;
- Zusman, Edie E;
- Weiss, Scott T;
- Du, Rose
- et al.
Published Web Location
https://doi.org/10.1212/nxg.0000000000200040Abstract
Background and objectives
While somatic mutations have been well-studied in cancer, their roles in other complex traits are much less understood. Our goal is to identify somatic variants that may contribute to the formation of saccular cerebral aneurysms.Methods
We performed whole-exome sequencing on aneurysm tissues and paired peripheral blood. RNA sequencing and the CRISPR/Cas9 system were then used to perform functional validation of our results.Results
Somatic variants involved in supervillin (SVIL) or its regulation were found in 17% of aneurysm tissues. In the presence of a mutation in the SVIL gene, the expression level of SVIL was downregulated in the aneurysm tissue compared with normal control vessels. Downstream signaling pathways that were induced by knockdown of SVIL via the CRISPR/Cas9 system in vascular smooth muscle cells (vSMCs) were determined by evaluating changes in gene expression and protein kinase phosphorylation. We found that SVIL regulated the phenotypic modulation of vSMCs to the synthetic phenotype via Krüppel-like factor 4 and platelet-derived growth factor and affected cell migration of vSMCs via the RhoA/ROCK pathway.Discussion
We propose that somatic variants form a novel mechanism for the development of cerebral aneurysms. Specifically, somatic variants in SVIL result in the phenotypic modulation of vSMCs, which increases the susceptibility to aneurysm formation. This finding suggests a new avenue for the therapeutic intervention and prevention of cerebral aneurysms.Many UC-authored scholarly publications are freely available on this site because of the UC's open access policies. Let us know how this access is important for you.
Main Content
For improved accessibility of PDF content, download the file to your device.
Enter the password to open this PDF file:
File name:
-
File size:
-
Title:
-
Author:
-
Subject:
-
Keywords:
-
Creation Date:
-
Modification Date:
-
Creator:
-
PDF Producer:
-
PDF Version:
-
Page Count:
-
Page Size:
-
Fast Web View:
-
Preparing document for printing…
0%