THSD1 (Thrombospondin Type 1 Domain Containing Protein 1) Mutation in the Pathogenesis of Intracranial Aneurysm and

Teresa Santiago-Sim1, Xiaoqian Fang1, Morgan L Hennessy1

  • 1From the Department of Neurosurgery (T.S.-S., X.F., G.W.H., K.J.P., S.M.C., K.J.Q., J.P.H., D.H.K.) and Division of Medical Genetics, Department of Internal Medicine (D.M.M.), The University of Texas Medical School at Houston; Department of Genetics, Harvard Medical School, Boston, MA (M.L.H., S.V.N., S.R.D., S.C.G., B.M., S.M.D., C.E.S., J.G.S.); Department of Neurosurgery (S.V.N.), Department of Medicine (M.S.L., C.A.M.), and Cardiovascular Division (C.E.S.), Brigham and Women's Hospital, Boston, MA; and Howard Hughes Medical Institute, Chevy Chase, MD (C.E.S.).

Stroke
|November 30, 2016
PubMed

Insights

Mutations in the THSD1 gene are linked to intracranial aneurysms (IA) and subarachnoid hemorrhage. Loss of THSD1 function causes cerebral bleeding in animal models, highlighting its role in vascular integrity.

Area of Science:

  • Genetics
  • Vascular Biology
  • Neurology

Background:

  • Intracranial aneurysms (IA) are a leading cause of subarachnoid hemorrhage.
  • Identifying the genetic basis of IA is crucial for understanding disease pathogenesis.

Purpose of the Study:

  • To identify specific genes associated with intracranial aneurysms.
  • To investigate the role of THSD1 mutations in IA and subarachnoid hemorrhage.

Main Methods:

  • Whole exome sequencing in a large family.
  • Targeted sequencing of THSD1 in IA probands and controls.
  • In vivo studies in zebrafish and mice, and in vitro endothelial cell models.

Main Results:

  • A THSD1 mutation segregated with IA in a large family.
  • THSD1 mutations were found in 8% of sporadic IA cases and were enriched in patients.
  • Loss of Thsd1 in animal models caused cerebral bleeding and impaired endothelial cell adhesion.

Conclusions:

  • THSD1 mutations are implicated in familial and sporadic IA.
  • THSD1 is essential for endothelial cell adhesion and maintaining vascular integrity.
  • This study offers new insights into IA pathogenesis and THSD1 function.
Abstract

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