Shen Qi, Little Shawn C, Xu Meiqi, Haupt Julia, Ast Cindy, Katagiri Takenobu, Mundlos Stefan, Seemann Petra, Kaplan Frederick S, Mullins Mary C, Shore Eileen M
Department of Orthopaedic Surgery, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6081, USA.
J Clin Invest. 2009 Nov;119(11):3462-72. doi: 10.1172/JCI37412. Epub 2009 Oct 12.
Patients with classic fibrodysplasia ossificans progressiva, a disorder characterized by extensive extraskeletal endochondral bone formation, share a recurrent mutation (R206H) within the glycine/serine-rich domain of ACVR1/ALK2, a bone morphogenetic protein type I receptor. Through a series of in vitro assays using several mammalian cell lines and chick limb bud micromass cultures, we determined that mutant R206H ACVR1 activated BMP signaling in the absence of BMP ligand and mediated BMP-independent chondrogenesis that was enhanced by BMP. We further investigated the interaction of mutant R206H ACVR1 with FKBP1A, a glycine/serine domain-binding protein that prevents leaky BMP type I receptor activation in the absence of ligand. The mutant protein exhibited reduced binding to FKBP1A in COS-7 simian kidney cell line assays, suggesting that increased BMP pathway activity in COS-7 cells with R206H ACVR1 is due, at least in part, to decreased binding of this inhibitory factor. Consistent with these findings, in vivo analyses of zebrafish embryos showed BMP-independent hyperactivation of BMP signaling in response to the R206H mutant, resulting in increased embryonic ventralization. These data support the conclusion that the mutant R206H ACVR1 receptor in FOP patients is an activating mutation that induces BMP signaling in a BMP-independent and BMP-responsive manner to promote chondrogenesis, consistent with the ectopic endochondral bone formation in these patients.
典型进行性骨化性纤维发育不良患者,这种疾病的特征是广泛的骨骼外软骨内骨形成,在骨形态发生蛋白I型受体ACVR1/ALK2富含甘氨酸/丝氨酸的结构域内存在一个反复出现的突变(R206H)。通过一系列使用多种哺乳动物细胞系和鸡胚肢芽微团培养的体外试验,我们确定突变型R206H ACVR1在没有骨形态发生蛋白(BMP)配体的情况下激活BMP信号,并介导BMP非依赖性软骨生成,且这种生成会被BMP增强。我们进一步研究了突变型R206H ACVR1与FKBP1A的相互作用,FKBP1A是一种与甘氨酸/丝氨酸结构域结合的蛋白,可防止在没有配体的情况下BMP I型受体的渗漏激活。在COS - 7猴肾细胞系试验中,突变蛋白与FKBP1A的结合减少,这表明在表达R206H ACVR1的COS - 7细胞中BMP信号通路活性增加至少部分是由于这种抑制因子的结合减少。与这些发现一致,斑马鱼胚胎的体内分析显示,对R206H突变体有反应的BMP信号在BMP非依赖性的情况下过度激活,导致胚胎腹侧化增加。这些数据支持以下结论:进行性骨化性纤维发育不良(FOP)患者中的突变型R206H ACVR1受体是一种激活突变,它以BMP非依赖性和BMP反应性方式诱导BMP信号以促进软骨生成,这与这些患者的异位软骨内骨形成一致。