Nakamura Yukio, Weidinger Gilbert, Liang Jennifer O, Aquilina-Beck Allisan, Tamai Keiko, Moon Randall T, Warman Matthew L
Howard Hughes Medical Institute, Department of Genetics, and Center for Human Genetics, Case School of Medicine, Case Western Reserve University, Cleveland, Ohio, USA.
J Clin Invest. 2007 Oct;117(10):3075-86. doi: 10.1172/JCI32001.
In humans, loss-of-function mutations in the gene encoding Wnt1 inducible signaling pathway protein 3 (WISP3) cause the autosomal-recessive skeletal disorder progressive pseudorheumatoid dysplasia (PPD). However, in mice there is no apparent phenotype caused by Wisp3 deficiency or overexpression. Consequently, the in vivo activities of Wisp3 have remained elusive. We cloned the zebrafish ortholog of Wisp3 and investigated its biologic activity in vivo using gain-of-function and loss-of-function approaches. Overexpression of zebrafish Wisp3 protein inhibited bone morphogenetic protein (BMP) and Wnt signaling in developing zebrafish. Conditioned medium-containing zebrafish and human Wisp3 also inhibited BMP and Wnt signaling in mammalian cells by binding to BMP ligand and to the Wnt coreceptors low-density lipoprotein receptor-related protein 6 (LRP6) and Frizzled, respectively. Wisp3 proteins containing disease-causing amino acid substitutions found in patients with PPD had reduced activity in these assays. Morpholino-mediated inhibition of zebrafish Wisp3 protein expression in developing zebrafish affected pharyngeal cartilage size and shape. These data provide a biologic assay for Wisp3, reveal a role for Wisp3 during zebrafish cartilage development, and suggest that dysregulation of BMP and/or Wnt signaling contributes to cartilage failure in humans with PPD.
在人类中,编码Wnt1诱导信号通路蛋白3(WISP3)的基因发生功能丧失性突变会导致常染色体隐性遗传性骨骼疾病——进行性假类风湿发育不良(PPD)。然而,在小鼠中,Wisp3基因缺失或过表达并未导致明显的表型。因此,Wisp3在体内的活性一直难以捉摸。我们克隆了斑马鱼的Wisp3直系同源基因,并使用功能获得和功能丧失方法研究了其在体内的生物学活性。斑马鱼Wisp3蛋白的过表达抑制了斑马鱼发育过程中的骨形态发生蛋白(BMP)和Wnt信号通路。含有斑马鱼和人类Wisp3的条件培养基也分别通过与BMP配体以及Wnt共受体低密度脂蛋白受体相关蛋白6(LRP6)和卷曲蛋白结合,抑制了哺乳动物细胞中的BMP和Wnt信号通路。在这些实验中,含有在PPD患者中发现的致病氨基酸替代的Wisp3蛋白活性降低。在发育中的斑马鱼中,吗啉代介导的对斑马鱼Wisp3蛋白表达的抑制影响了咽软骨的大小和形状。这些数据为Wisp3提供了一种生物学检测方法,揭示了Wisp3在斑马鱼软骨发育过程中的作用,并表明BMP和/或Wnt信号通路失调导致了PPD患者的软骨功能障碍。