Klages Jochen, Kotzsch Alexander, Coles Murray, Sebald Walter, Nickel Joachim, Müller Thomas, Kessler Horst
Center of Integrated Protein Science (CIPSM) at the Technische Universitat Munchen, Lichtenbergstrasse 4, D-85747 Garching, Germany.
Biochemistry. 2008 Nov 18;47(46):11930-9. doi: 10.1021/bi801059j. Epub 2008 Oct 21.
The structure of the extracellular domain of BMP receptor IA was determined in solution by NMR spectroscopy and compared to its structure when bound to its ligand BMP-2. While most parts of the secondary structure are highly conserved between the bound and unbound forms, large conformational rearrangements can be observed in the beta4beta5 loop of BMPR-IA, which is in contact with BMP-2 and harbors the main binding determinants for the BMPR-IA-BMP-2 interaction. In its unbound form, helix alpha1 in BMPR-IA, which is in the center of the binding epitope for BMP-2, is missing. Since BMP-2 also shows conformational changes in the type I receptor epitope upon binding to BMPR-IA, both binding partners pass through an induced fit mechanism to adapt their binding interfaces to a given interaction surface. The inherent flexibility of both partners possibly explains the promiscuous ligand-receptor interaction observed in the BMP protein superfamily.
通过核磁共振光谱法在溶液中确定了骨形态发生蛋白受体IA(BMP receptor IA)细胞外结构域的结构,并将其与结合配体骨形态发生蛋白-2(BMP-2)时的结构进行了比较。虽然二级结构的大部分在结合和未结合形式之间高度保守,但在BMPR-IA的β4β5环中可观察到较大的构象重排,该环与BMP-2接触并包含BMPR-IA与BMP-2相互作用的主要结合决定因素。在其未结合形式中,位于BMP-2结合表位中心的BMPR-IA中的α1螺旋缺失。由于BMP-2在与BMPR-IA结合时在I型受体表位中也显示出构象变化,两个结合伙伴都通过诱导契合机制来使它们的结合界面适应给定的相互作用表面。两个伙伴固有的灵活性可能解释了在BMP蛋白超家族中观察到的混杂的配体-受体相互作用。