Research Group Development and Disease, Max-Planck-Institut für Molekulare Genetik, Berlin, Germany.
PLoS Genet. 2009 Nov;5(11):e1000747. doi: 10.1371/journal.pgen.1000747. Epub 2009 Nov 26.
Signaling output of bone morphogenetic proteins (BMPs) is determined by two sets of opposing interactions, one with heterotetrameric complexes of cell surface receptors, the other with secreted antagonists that act as ligand traps. We identified two mutations (N445K,T) in patients with multiple synostosis syndrome (SYM1) in the BMP-related ligand GDF5. Functional studies of both mutants in chicken micromass culture demonstrated a gain of function caused by a resistance to the BMP-inhibitor NOGGIN and an altered signaling effect. Residue N445, situated within overlapping receptor and antagonist interfaces, is highly conserved among the BMP family with the exception of BMP9 and BMP10, in which it is substituted with lysine. Like the mutant GDF5, both BMPs are insensitive to NOGGIN and show a high chondrogenic activity. Ectopic expression of BMP9 or the GDF5 mutants resulted in massive induction of cartilage in an in vivo chick model presumably by bypassing the feedback inhibition imposed by endogenous NOGGIN. Swapping residues at the mutation site alone was not sufficient to render Bmp9 NOG-sensitive; however, successive introduction of two additional substitutions imparted high to total sensitivity on customized variants of Bmp9. In conclusion, we show a new mechanism for abnormal joint development that interferes with a naturally occurring regulatory mechanism of BMP signaling.
骨形态发生蛋白 (BMPs) 的信号输出由两组相互对立的相互作用决定,一组与细胞表面受体的异四聚体复合物相互作用,另一组与作为配体陷阱的分泌型拮抗剂相互作用。我们在多发性骨融合综合征 (SYM1) 患者中发现了 GDF5 相关配体中的两个突变 (N445K,T)。对鸡微团培养中的两种突变体的功能研究表明,由于对 BMP 抑制剂 NOGGIN 的抗性和信号转导作用的改变,导致功能获得。位于受体和拮抗剂重叠界面内的残基 N445 在 BMP 家族中高度保守,除了 BMP9 和 BMP10,它们被赖氨酸取代。与突变的 GDF5 一样,这两种 BMP 都对 NOGGIN 不敏感,并表现出高软骨生成活性。BMP9 或 GDF5 突变体的异位表达导致体内小鸡模型中大量诱导软骨形成,可能是通过绕过内源性 NOGGIN 施加的反馈抑制。仅交换突变部位的残基不足以使 Bmp9 对 NOG 敏感;然而,连续引入另外两个取代基赋予定制的 Bmp9 变体高度至完全敏感性。总之,我们展示了一种新的异常关节发育机制,该机制干扰了 BMP 信号的自然发生的调节机制。