首页> 美国卫生研究院文献>Molecular Endocrinology >Altered Selectivity of Parathyroid Hormone (PTH) and PTH-Related Protein (PTHrP) for Distinct Conformations of the PTH/PTHrP Receptor
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Altered Selectivity of Parathyroid Hormone (PTH) and PTH-Related Protein (PTHrP) for Distinct Conformations of the PTH/PTHrP Receptor

机译:甲状旁腺激素(PTH)和PTH相关蛋白(PTHrP)对PTH / PTHrP受体不同构象的选择性改变

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摘要

PTH and PTHrP use the same G protein-coupled receptor, the PTH/PTHrP receptor (PTHR), to mediate their distinct biological actions. The extent to which the mechanisms by which the two ligands bind to the PTHR differ is unclear. We examined this question using several pharmacological and biophysical approaches. Kinetic dissociation and equilibrium binding assays revealed that the binding of [125I]PTHrP(1–36) to the PTHR was more sensitive to GTPγS (added to functionally uncouple PTHR-G protein complexes) than was the binding of [125I]PTH(1–34) (∼75% maximal inhibition vs. ∼20%). Fluorescence resonance energy transfer-based kinetic analyses revealed that PTHrP(1–36) bound to the PTHR more slowly and dissociated from it more rapidly than did PTH(1–34). The cAMP signaling response capacity of PTHrP(1–36) in cells decayed more rapidly than did that of PTH(1–34) (t1/2 = ∼1 vs. ∼2 h). Divergent residue 5 in the ligand, Ile in PTH and His in PTHrP, was identified as a key determinant of the altered receptor-interaction responses exhibited by the two peptides. We conclude that whereas PTH and PTHrP bind similarly to the G protein-coupled PTHR conformation (RG), PTH has a greater capacity to bind to the G protein-uncoupled conformation (R0) and, hence, can produce cumulatively greater signaling responses (via R0→RG isomerization) than can PTHrP. Such conformational selectivity may relate to the distinct modes by which PTH and PTHrP act biologically, endocrine vs. paracrine, and may help explain reported differences in the effects that the ligands have on calcium and bone metabolism when administered to humans.
机译:PTH和PTHrP使用相同的G蛋白偶联受体PTH / PTHrP受体(PTHR)介导其独特的生物学作用。两种配体与PTHR结合的机制在多大程度上尚不清楚。我们使用几种药理和生物物理方法研究了这个问题。动力学解离和平衡结合实验表明,[ 125 I] PTH​​rP(1-36)与PTHR的结合对GTPγS(添加到功能上解偶联PTHR-G蛋白复合物)的敏感性更高。 [ 125 I] PTH​​(1-34)的结合(最大抑制约为75%,而最大抑制约为20%)。基于荧光共振能量转移的动力学分析表明,与PTH(1-34)相比,PTHrP(1-36)与PTHR的结合更慢,并且与之分离的速度更快。细胞中PTHrP(1-36)的cAMP信号响应能力的衰减比PTH(1-34)更快(t1 / 2 =〜1 vs.〜2 h)。配体中的不同残基5(PTH中的Ile和PTHrP中的His)被确定为这两种肽表现出的受体相互作用改变的关键决定因素。我们得出的结论是,尽管PTH和PTHrP与G蛋白偶联的PTHR构象(RG)类似地结合,但是PTH具有与G蛋白偶联的构象(R 0 )结合的更大能力,因此,可以产生比PTHrP更大的信号响应(通过R 0 →RG异构化)。这种构象选择性可能与PTH和PTHrP发挥生物学作用的不同模式有关(内分泌与旁分泌),并且可能有助于解释已报道的配体在施用于人类时对钙和骨代谢的影响存在差异。

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