生物
颅面
凝集素途径
遗传学
神经嵴
基因
补体系统
解剖
替代补体途径
抗体
作者
Caroline Rooryck,Anna Dı́az-Font,Daniel P.S. Osborn,Elyes Chabchoub,Víctor Hernández-Hernández,Hanan E. Shamseldin,Joanna Kenny,Aoife Waters,Dagan Jenkins,Ali Al Kaissi,Gabriela Ferraz Leal,Bruno Dallapiccola,Franco A. Carnevale,Maria Bitner‐Glindzicz,Melissa Lees,Raoul C. M. Hennekam,Philip Stanier,Alan J. Burns,Hilde Peeters,Fowzan S. Alkuraya,Philip L. Beales
出处
期刊:Nature Genetics
[Springer Nature]
日期:2011-01-23
卷期号:43 (3): 197-203
被引量:233
摘要
3MC syndrome has been proposed as a unifying term encompassing the overlapping Carnevale, Mingarelli, Malpuech and Michels syndromes. These rare autosomal recessive disorders exhibit a spectrum of developmental features, including characteristic facial dysmorphism, cleft lip and/or palate, craniosynostosis, learning disability and genital, limb and vesicorenal anomalies. Here we studied 11 families with 3MC syndrome and identified two mutated genes, COLEC11 and MASP1, both of which encode proteins in the lectin complement pathway (collectin kidney 1 (CL-K1) and MASP-1 and MASP-3, respectively). CL-K1 is highly expressed in embryonic murine craniofacial cartilage, heart, bronchi, kidney and vertebral bodies. Zebrafish morphants for either gene develop pigmentary defects and severe craniofacial abnormalities. Finally, we show that CL-K1 serves as a guidance cue for neural crest cell migration. Together, these findings demonstrate a role for complement pathway factors in fundamental developmental processes and in the etiology of 3MC syndrome.
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