4.7 Article

Thrombospondin1 (TSP1) replacement prevents cerebral cavernous malformations

Journal

JOURNAL OF EXPERIMENTAL MEDICINE
Volume 214, Issue 11, Pages 3331-3346

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1084/jem.20171178

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Funding

  1. CAO Pilot Grant from the Beth Israel Deaconess Medical Center
  2. NIH [HL078784, NS092521]
  3. University of California, San Diego School of Medicine Microscopy Core [P30 NS047101]

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KRIT1 mutations are the most common cause of cerebral cavernous malformation (CCM). Acute Krit1 gene inactivation in mouse brain microvascular endothelial cells (BMECs) changes expression of multiple genes involved in vascular development. These changes include suppression of Thbs1, which encodes thrombospondin1 (TSP1) and has been ascribed to KLF2- and KLF4-mediated repression of Thbs1. In vitro reconstitution of TSP1 with either full-length TSP1 or 3TSR, an anti-angiogenic TSP1 fragment, suppresses heightened vascular endothelial growth factor signaling and preserves BMEC tight junctions. Furthermore, administration of 3TSR prevents the development of lesions in a mouse model of CCM1 (Krit1(ECKO)) as judged by histology and quantitative micro-computed tomography. Conversely, reduced TSP1 expression contributes to the pathogenesis of CCM, because inactivation of one or two copies of Thbs1 exacerbated CCM formation. Thus, loss of Krit1 function disables an angiogenic checkpoint to enable CCM formation. These results suggest that 3TSR, or other angiogenesis inhibitors, can be repurposed for TSP1 replacement therapy for CCMs.

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