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Development of a biologically active secretin analogue incorporating a radioiodinatable photolabile p-(4-hydroxybenzoyl)phenylalanine in position 10.

机译:在位置10掺入可放射性碘化的光不稳定对-(4-羟基苯甲酰基)苯丙氨酸的生物活性促分泌素类似物的开发

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摘要

Photoaffinity labeling is a powerful approach for direct elucidation of residue-residue approximations as a ligand is bound to its receptor, providing important constraints for molecular modeling. Probes utilized for this need to incorporate photolabile sites of covalent attachment and an indicator, such as a radiolabel. Radioiodine provides a particularly useful high specific radioactivity label, but due to its size, can only be accommodated in limited positions within a peptide ligand. In this work, we attempted to develop a probe for the secretin receptor that would directly provide spatial approximation data for position 10 of secretin, its site of radiolabeling. This was achieved by incorporation into a secretin analogue of the radioiodinatable and photolabile benzophenone moiety, p-(4-hydroxybenzoyl)phenylalanine (OH-Bpa). An unintended additional modification of secretin in synthesizing this probe was the elimination of Gly(4). This probe was shown to bind to the secretin receptor specifically and saturably (K(i)=25.3+/-6.0 nM). It represented a full agonist, stimulating intracellular cAMP in a concentration-dependent manner (EC(50)=4.2+/-0.7 nM). It was also able to affinity label the secretin receptor in a specific and efficient manner. This probe should provide the opportunity to identify the region of the secretin receptor in spatial approximation with position 10, within the pharmacophore of secretin, leading to refinement of molecular conformational models of this agonist-bound receptor.
机译:光亲和标记法是一种直接阐明残基残基近似值的有力方法,因为配体与其受体结合,为分子建模提供了重要限制。为此使用的探针需要掺入光不稳定的共价连接位点和指示剂,例如放射性标记。放射性碘提供了特别有用的高比放射性标记,但由于其大小,只能容纳在肽配体内的有限位置。在这项工作中,我们尝试开发一种针对促胰液素受体的探针,该探针将直接为促胰液素的放射性标记位点10的位置提供空间近似数据。这是通过将放射性碘和光不稳定的二苯甲酮部分,对-(4-羟基苯甲酰基)苯丙氨酸(OH-Bpa)掺入促胰液素类似物中来实现的。合成该探针时,分泌素的意外修饰是消除了Gly(4)。该探针显示出特异性地且饱和地与促胰液素受体结合(K(i)= 25.3 +/- 6.0nM)。它代表一种完全的激动剂,以浓度依赖的方式刺激细胞内cAMP(EC(50)= 4.2 +/- 0.7 nM)。它还能够以特异性和有效的方式亲和标记促胰液素受体。该探针应提供机会,以在促胰液素的药效团内与位置10接近的空间中识别促胰液素受体的区域,从而使该激动剂结合受体的分子构象模型得以完善。

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