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首页> 外文期刊>Journal of Molecular Biology >Transforming Growth Factor-beta (TGF-beta) Binding to the Extracellular Domain of the Type II TGF-beta Receptor: Receptor Capture on a Biosensor Surface Using a New Coiled-coil Capture System Demonstrates that Avidity Contributes Significantly to Hig
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Transforming Growth Factor-beta (TGF-beta) Binding to the Extracellular Domain of the Type II TGF-beta Receptor: Receptor Capture on a Biosensor Surface Using a New Coiled-coil Capture System Demonstrates that Avidity Contributes Significantly to Hig

机译:转化生长因子-β(TGF-β)绑定到II型TGF-β受体的胞外域:使用新的螺旋线圈捕获系统在生物传感器表面上的受体捕获表明亲和力显着贡献Hig

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摘要

Mature TGF-beta isoforms, which are covalent dimers, signal by binding to three types of cell surface receptors, the type I, II and III TGF-beta receptors. A complex composed of the TGF-beta ligand and the type I and II receptors is required for signaling. The type II receptor is responsible for recruiting TGF-beta into the heteromeric ligand/type I receptor/type II receptor complex. The purpose of this study was to test for the extent that avidity contributes to receptor affinity. Using a surface plasmon resonance (SPR)-based biosensor (the BIACORE), we captured the extracellular domain of the type II receptor (TbetaRIIED) at the biosensor surface in an oriented and stable manner by using a de novo designed coiled-coil (E/K coil) heterodimerizing system. We characterized the kinetics of binding of three TGF-beta isoforms to this immobilized TbetaRIIED. The results demonstrate that the stoichiometry of TGF-beta binding to TbetaRIIED was one dimeric ligand to two receptors. All three TGF-beta isoforms had rapid and similar association rates, but different dissociation rates, which resulted in the equilibrium dissociation constants being approximately 5pM for the TGF-beta1 and -beta3 isoforms, and 5nM for the TGF-beta2 isoform. Since these apparent affinities are at least four orders of magnitude higher than those determined when TGF-beta was immobilized, and are close to those determined for TbetaRII at the cell surface, we suggest that avidity contributes significantly to high affinity receptor binding both at the biosensor and cell surfaces. Finally, we demonstrated that the coiled-coil immobilization approach does not require the purification of the captured protein, making it an attractive tool for the rapid study of any protein-protein interaction.
机译:共价二聚体的成熟TGF-β亚型通过结合三种类型的细胞表面受体(I,II和III型TGF-β受体)发出信号。由TGF-β配体以及I型和II型受体组成的复合物是信号传导所必需的。 II型受体负责将TGF-β募集到异源配体/ I型受体/ II型受体复合物中。这项研究的目的是测试亲和力有助于受体亲和力的程度。使用基于表面等离振子共振(SPR)的生物传感器(BIACORE),通过使用从头设计的螺旋线圈(E)以定向且稳定的方式在生物传感器表面捕获了II型受体(TbetaRIIED)的胞外域/ K线圈)异二聚系统。我们表征了三种TGF-β同工型与此固定的TbetaRIIED结合的动力学。结果表明,TGF-β与TbetaRIIED结合的化学计量是两个受体的一个二聚体配体。这三种TGF-β同工型均具有快速且相似的缔合速率,但解离速率不同,这导致TGF-β1和-β3同工型的平衡解离常数约为5pM,而TGF-β2同工型的平衡解离常数约为5nM。由于这些表观亲和力比固定TGF-beta时确定的亲和力至少高四个数量级,并且与细胞表面上针对TbetaRII的亲和力确定的亲和力接近,因此我们建议亲和力显着促进了生物传感器上高亲和力受体的结合和细胞表面。最后,我们证明了卷曲螺旋固定方法不需要纯化捕获的蛋白质,使其成为快速研究任何蛋白质-蛋白质相互作用的有吸引力的工具。

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