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Structural basis for the inhibition of insulin-like growth factors by insulin-like growth factor-binding proteins

机译:胰岛素样生长因子结合蛋白抑制胰岛素样生长因子的结构基础

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摘要

Insulin-like growth factor-binding proteins (IGFBPs) control bioavailability, activity, and distribution of insulin-like growth factor (IGF)1 and -2 through high-affinity IGFBP/IGF complexes. IGF-binding sites are found on N- and C-terminal fragments of IGFBPs, the two conserved domains of IGFBPs. The relative contributions of these domains to IGFBP/IGF complexation has been difficult to analyze, in part, because of the lack of appropriate three-dimensional structures. To analyze the effects of N- and C-terminal domain interactions, we determined several x-ray structures: first, of a ternary complex of N- and C-terminal domain fragments of IGFBP4 and IGF1 and second, of a “hybrid” ternary complex using the C-terminal domain fragment of IGFBP1 instead of IGFBP4. We also solved the binary complex of the N-terminal domains of IGFBP4 and IGF1, again to analyze C- and N-terminal domain interactions by comparison with the ternary complexes. The structures reveal the mechanisms of IGF signaling regulation via IGFBP binding. This finding supports research into the design of IGFBP variants as therapeutic IGF inhibitors for diseases of IGF disregulation. In IGFBP4, residues 1–38 form a rigid disulphide bond ladder-like structure, and the first five N-terminal residues bind to IGF and partially mask IGF residues responsible for the type 1 IGF receptor binding. A high-affinity IGF1-binding site is located in a globular structure between residues 39 and 82. Although the C-terminal domains do not form stable binary complexes with either IGF1 or the N-terminal domain of IGFBP4, in the ternary complex, the C-terminal domain contacts both and contributes to blocking of the IGF1 receptor-binding region of IGF1.
机译:胰岛素样生长因子结合蛋白(IGFBP)通过高亲和力IGFBP / IGF复合物控制胰岛素样生长因子(IGF)1和-2的生物利用度,活性和分布。在IGFBP的两个保守结构域IGFBP的N端和C端片段上发现了IGF结合位点。这些域对IGFBP / IGF复杂性的相对贡献很难分析,部分原因是缺乏适当的三维结构。为了分析N和C末端域相互作用的影响,我们确定了几种X射线结构:第一,IGFBP4和IGF1的N和C末端域片段的三元复合物,其次,“混合”三元使用IGFBP1的C端结构域片段而不是IGFBP4构建复合体。我们还解决了IGFBP4和IGF1 N末端结构域的二元复合物,再次通过与三元复合物进行比较来分析C末端和N末端结构域的相互作用。该结构揭示了通过IGFBP结合来调节IGF信号传导的机制。这一发现支持对IGFBP变体作为IGF失调性疾病的治疗性IGF抑制剂的设计进行研究。在IGFBP4中,残基1-38形成刚性的二硫键梯状结构,并且前五个N末端残基与IGF结合并部分掩盖负责1型IGF受体结合的IGF残基。高亲和力的IGF1结合位点位于残基39和82之间的球形结构中。尽管C末端结构域不与IGF1或IGFBP4的N末端结构域形成稳定的二元复合物,但在三元复合物中, C端结构域接触两者,并有助于阻断​​IGF1的IGF1受体结合区。

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