Allendorph George P, Vale Wylie W, Choe Senyon
Structural Biology Laboratory, The Salk Institute, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2006 May 16;103(20):7643-8. doi: 10.1073/pnas.0602558103. Epub 2006 May 3.
The crystal structure of the complete signaling complex formed between bone morphogenetic protein 2 (BMP-2) and the extracellular domains (ECDs) of its type I receptor [bone morphogenetic protein receptor type Ia (BMPR-Ia)-ECD] and its type II receptor [activin receptor type II (ActRII)-ECD] shows two fundamental structural constraints for receptor assembly. First, the homodimeric BMP-2 ligand assembles two pairs of each receptor symmetrically, where each of the receptor ECDs does not make physical contact. Therefore, conformational communication between receptor ECDs, if any, should be propagated through the central ligand. Second, the type I and II receptor interfaces of the complex, when compared with those of binary complexes such as BMP-2/BMPR Ia-ECD, BMP-7/ActRII-ECD, and activin/ActRIIb-ECD, respectively, show there are common sets of positions repeatedly used by both ligands and receptors. Therefore, specificity-determining amino acid differences at the receptor interfaces should also account for the disparity in affinity of individual receptors for different ligand subunits. We find that a specific mutation to BMP-2 increases its affinity to ActRII-ECD by 5-fold. These results together establish that the specific signaling output is largely determined by two variables, the ligand-receptor pair identity and the mode of cooperative assembly of relevant receptors governed by the ligand flexibility in a membrane-restricted manner.
骨形态发生蛋白2(BMP - 2)与其I型受体[骨形态发生蛋白受体Ia型(BMPR - Ia)-胞外结构域(ECD)]和II型受体[激活素受体II型(ActRII)-ECD]形成的完整信号复合物的晶体结构显示了受体组装的两个基本结构限制。首先,同二聚体BMP - 2配体对称地组装两对每种受体,其中每个受体ECD不发生物理接触。因此,受体ECD之间的构象通讯(如果存在的话)应通过中央配体进行传播。其次,与二元复合物(如BMP - 2/BMPR Ia - ECD、BMP - 7/ActRII - ECD和激活素/ActRIIb - ECD)的复合物的I型和II型受体界面相比,显示配体和受体都反复使用了共同的位置集。因此,受体界面处决定特异性的氨基酸差异也应解释各个受体对不同配体亚基亲和力的差异。我们发现对BMP - 2进行特定突变可使其对ActRII - ECD的亲和力提高5倍。这些结果共同表明,特定的信号输出在很大程度上由两个变量决定,即配体-受体对的身份以及由膜限制方式下配体灵活性所控制的相关受体的协同组装模式。