Literature DB >> 28844842

Cerebral Vein Malformations Result from Loss of Twist1 Expression and BMP Signaling from Skull Progenitor Cells and Dura.

Max A Tischfield1, Caroline D Robson2, Nicole M Gilette3, Shek Man Chim4, Folasade A Sofela3, Michelle M DeLisle5, Alon Gelber3, Brenda J Barry6, Sarah MacKinnon7, Linda R Dagi8, Jeremy Nathans9, Elizabeth C Engle10.   

Abstract

Dural cerebral veins (CV) are required for cerebrospinal fluid reabsorption and brain homeostasis, but mechanisms that regulate their growth and remodeling are unknown. We report molecular and cellular processes that regulate dural CV development in mammals and describe venous malformations in humans with craniosynostosis and TWIST1 mutations that are recapitulated in mouse models. Surprisingly, Twist1 is dispensable in endothelial cells but required for specification of osteoprogenitor cells that differentiate into preosteoblasts that produce bone morphogenetic proteins (BMPs). Inactivation of Bmp2 and Bmp4 in preosteoblasts and periosteal dura causes skull and CV malformations, similar to humans harboring TWIST1 mutations. Notably, arterial development appears normal, suggesting that morphogens from the skull and dura establish optimal venous networks independent from arterial influences. Collectively, our work establishes a paradigm whereby CV malformations result from primary or secondary loss of paracrine BMP signaling from preosteoblasts and dura, highlighting unique cellular interactions that influence tissue-specific angiogenesis in mammals.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  BMP2; BMP4; ICP; Twist1; cerebral veins; coronal suture; craniosynostosis; osteoblast; skull; venous angiogenesis

Mesh:

Substances:

Year:  2017        PMID: 28844842      PMCID: PMC5595652          DOI: 10.1016/j.devcel.2017.07.027

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  42 in total

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