AMACO Is a Component of the Basement Membrane-Associated Fraser Complex

作者:Richardson Rebecca J; Gebauer Jan M; Zhang Jin Li; Kobbe Birgit; Keene Douglas R; Karlsen Kristina Rokenes; Richetti Stefania; Wohl Alexander P; Sengle Gerhard; Neiss Wolfram F; Paulsson Mats; Hammerschmidt Matthias*; Wagener Raimund
来源:Journal of Investigative Dermatology, 2014, 134(5): 1313-1322.
DOI:10.1038/jid.2013.492

摘要

Fraser syndrome (FS) is a phenotypically variable, autosomal recessive disorder characterized by cryptophthalmus, cutaneous syndactyly, and other malformations resulting from mutations in FRAS1, FREM2, and GRIP1. Transient embryonic epidermal blistering causes the characteristic defects of the disorder. Fras1, Frem1, and Frem2 form the extracellular Fraser complex, which is believed to stabilize the basement membrane. However, several cases of FS could not be attributed to mutations in FRAS1, FREM2, or GRIP1, and FS displays high clinical variability, suggesting that there is an additional genetic, possibly modifying contribution to this disorder. An extracellular matrix protein containing VWA-like domains related to those in matrilins and collagens (AMACO), encoded by the VWA2 gene, has a very similar tissue distribution to the Fraser complex proteins in both mouse and zebrafish. Here, we show that AMACO deposition is lost in Fras1-deficient zebrafish and mice and that Fras1 and AMACO interact directly via their chondroitin sulfate proteoglycan (CSPG) and P2 domains. Knockdown of vwa2, which alone causes no phenotype, enhances the phenotype of hypomorphic Fras1 mutant zebrafish. Together, our data suggest that AMACO represents a member of the Fraser complex.

  • 出版日期2014-5