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首页> 外文期刊>BMC Structural Biology >A silent H-bond can be mutationally activated for high-affinity interaction of BMP-2 and activin type IIB receptor
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A silent H-bond can be mutationally activated for high-affinity interaction of BMP-2 and activin type IIB receptor

机译:沉默的H键可被突变激活以实现BMP-2和Activin IIB受体的高亲和力相互作用

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Background Bone morphogenetic proteins (BMPs) are key regulators in the embryonic development and postnatal tissue homeostasis in all animals. Loss of function or dysregulation of BMPs results in severe diseases or even lethality. Like transforming growth factors β (TGF-βs), activins, growth and differentiation factors (GDFs) and other members of the TGF-β superfamily, BMPs signal by assembling two types of serine/threonine-kinase receptor chains to form a hetero-oligomeric ligand-receptor complex. BMP ligand receptor interaction is highly promiscuous, i.e. BMPs bind more than one receptor of each subtype, and a receptor bind various ligands. The activin type II receptors are of particular interest, since they bind a large number of diverse ligands. In addition they act as high-affinity receptors for activins but are also low-affinity receptors for BMPs. ActR-II and ActR-IIB therefore represent an interesting example how affinity and specificity might be generated in a promiscuous background. Results Here we present the high-resolution structures of the ternary complexes of wildtype and a variant BMP-2 bound to its high-affinity type I receptor BMPR-IA and its low-affinity type II receptor ActR-IIB and compare them with the known structures of binary and ternary ligand-receptor complexes of BMP-2. In contrast to activin or TGF-β3 no changes in the dimer architecture of the BMP-2 ligand occur upon complex formation. Functional analysis of the ActR-IIB binding epitope shows that hydrophobic interactions dominate in low-affinity binding of BMPs; polar interactions contribute only little to binding affinity. However, a conserved H-bond in the center of the type II ligand-receptor interface, which does not contribute to binding in the BMP-2 – ActR-IIB interaction can be mutationally activated resulting in a BMP-2 variant with high-affinity for ActR-IIB. Further mutagenesis studies were performed to elucidate the binding mechanism allowing us to construct BMP-2 variants with defined type II receptor binding properties. Conclusion Binding specificity of BMP-2 for its three type II receptors BMPR-II, Act-RII and ActR-IIB is encoded on single amino acid level. Exchange of only one or two residues results in BMP-2 variants with a dramatically altered type II receptor specificity profile, possibly allowing construction of BMP-2 variants that address a single type II receptor. The structure-/function studies presented here revealed a new mechanism, in which the energy contribution of a conserved H-bond is modulated by surrounding intramolecular interactions to achieve a switch between low- and high-affinity binding.
机译:背景技术骨形态发生蛋白(BMP)是所有动物胚胎发育和出生后组织动态平衡的关键调节剂。 BMPs的功能丧失或失调会导致严重疾病甚至致命。像转化生长因子β(TGF-β),激活素,生长和分化因子(GDF)和TGF-β超家族的其他成员一样,BMP通过组装两种类型的丝氨酸/苏氨酸激酶受体链形成异源寡聚体来发出信号配体-受体复合物。 BMP配体受体相互作用高度混杂,即BMP与每种亚型的一个以上受体结合,并且一个受体与各种配体结合。 II型激活素受体特别受关注,因为它们结合了大量不同的配体。另外,它们充当激活素的高亲和力受体,但也是BMP的低亲和力受体。因此,ActR-II和ActR-IIB代表了一个有趣的示例,说明如何在混杂背景中产生亲和力和特异性。结果在这里,我们介绍了野生型和与其高亲和力I型受体BMPR-IA和低亲和力II型受体ActR-IIB结合的BMP-2变体的三元复合物的高分辨率结构,并将其与已知的三元复合物进行了比较。 BMP-2的二元和三元配体-受体复合物的结构。与激活素或TGF-β3相反,在复合物形成时,BMP-2配体的二聚体结构没有变化。对ActR-IIB结合表位的功能分析表明,疏水性相互作用在BMP的低亲和力结合中占主导。极性相互作用对结合亲和力的贡献很小。但是,II型配体-受体界面中心的保守氢键(其无助于BMP-2 – ActR-IIB相互作用的结合)可以被突变激活,从而产生具有高亲和力的BMP-2变体适用于ActR-IIB。进行了进一步的诱变研究,以阐明结合机制,使我们能够构建具有确定的II型受体结合特性的BMP-2变体。结论BMP-2对三种II型受体BMPR-II,Act-RII和ActR-IIB的结合特异性在单个氨基酸水平上编码。仅交换一个或两个残基将导致BMP-2变异体的II型受体特异性谱发生显着改变,可能允许构建针对单个II型受体的BMP-2变异体。此处提出的结构/功能研究揭示了一种新的机制,其中保守的H键的能量贡献通过周围的分子内相互作用来调节,以实现低亲和力和高亲和力结合之间的转换。

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