[期刊论文]


Rapid Activation of Bone Morphogenic Protein 9 by Receptor-mediated Displacement of Pro-domains

作   者:
Yvonne Kienast;Ute Jucknischke;Stefan Scheiblich;Martina Thier;Mariana de Wouters;Alexander Haas;Christian Lehmann;Verena Brand;Dirk Bernicke;Konrad Honold;Stefan Lorenz;

出版年:2016

页     码:3395 - 3410
出版社:American Society for Biochemistry & Molecular Biology (ASBMB)


摘   要:

By non-covalent association after proteolytic cleavage, the pro-domains modulate the activities of the mature growth factor domains across the transforming growth factor-β family. In the case of bone morphogenic protein 9 (BMP9), however, the pro-domains do not inhibit the bioactivity of the growth factor, and the BMP9·pro-domain complexes have equivalent biological activities as the BMP9 mature ligand dimers. By using real-time surface plasmon resonance, we could demonstrate that either binding of pro-domain-complexed BMP9 to type I receptor activin receptor-like kinase 1 (ALK1), type II receptors, co-receptor endoglin, or to mature BMP9 domain targeting antibodies leads to immediate and complete displacement of the pro-domains from the complex. Vice versa, pro-domain binding by an anti-pro-domain antibody results in release of the mature BMP9 growth factor. Based on these findings, we adjusted ELISA assays to measure the protein levels of different BMP9 variants. Although mature BMP9 and inactive precursor BMP9 protein were directly detectable by ELISA, BMP9·pro-domain complex could only be measured indirectly as dissociated fragments due to displacement of mature growth factor and pro-domains after antibody binding. Our studies provide a model in which BMP9 can be readily activated upon getting into contact with its receptors. This increases the understanding of the underlying biology of BMP9 activation and also provides guidance for ELISA development for the detection of circulating BMP9 variants. © 2016 by The American Society for Biochemistry and Molecular Biology, Inc.



关键字:

bone morphogenetic protein (BMP) ; homeostasis ; protein complex ; surface plasmon resonance (SPR) ; transforming growth factor β (TGF-B)


所属期刊
Journal of Biological Chemistry
ISSN: 0021-9258
来自:American Society for Biochemistry & Molecular Biology (ASBMB)