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Characterization of a conformationally sensitive TOAC spin-labeled substance P.

机译:构象敏感的TOAC自旋标记物质P的表征。

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To probe the binding of a peptide agonist to a G-protein coupled receptor in native membranes, the spin-labeled amino acid analogue 4-amino-4-carboxy-2,2,6,6-tetramethylpiperidino-1-oxyl (TOAC) was substituted at either position 4 or 9 within the substance P peptide (RPKPQQFFGLM-NH2), a potent agonist of the neurokinin-1 receptor. The affinity of the 4-TOAC analog is comparable to the native peptide while the affinity of the 9-TOAC derivative is approximately 250-fold lower. Both peptides activate receptor signaling, though the potency of the 9-TOAC peptide is substantially lower. The utility of these modified ligands for reporting conformational dynamics during the neurokinin-1 receptor activation was explored using EPR spectroscopy, which can determine the real-time dynamics of the TOAC nitroxides in solution. While the binding of both the 4-TOAC substance P and 9-TOAC substance P peptides to isolated cell membranes containing the neurokinin-1 receptor is detected, a bound signal for the 9-TOAC peptide is only obtained under conditions that maintain the receptor in its high-affinity binding state. In contrast, 4-TOAC substance P binding is observed by solution EPR under both low- and high-affinity receptor states, with evidence of a more strongly immobilized peptide in the presence of GDP. In addition, to better understand the conformational consequences of TOAC substitution into substance P as it relates to receptor binding and activation, atomistic models for both the 4- and 9-TOAC versions of the peptide were constructed, and the molecular dynamics calculated via simulated annealing to explore the influence of the TOAC substitutions on backbone structure.
机译:为了探测肽激动剂与天然膜中G蛋白偶联受体的结合,自旋标记的氨基酸类似物4-氨基-4-羧基-2,2,6,6-四甲基哌啶基-1-氧基(TOAC)在物质P肽(RPKPQQFFGLM-NH2)(一种神经激肽-1受体的有效激动剂)的4或9位上被取代。 4-TOAC类似物的亲和力与天然肽相当,而9-TOAC衍生物的亲和力低约250倍。尽管9-TOAC肽的效力明显较低,但这两种肽均激活受体信号传导。使用EPR光谱研究了这些修饰的配体在报告神经激肽1受体激活过程中构象动力学方面的实用性,该方法可以确定溶液中TOAC氮氧化物的实时动力学。虽然检测到4-TOAC物质P和9-TOAC物质P肽与含有神经激肽-1受体的分离细胞膜的结合,但仅在维持受体处于以下条件的条件下才能获得9-TOAC肽的结合信号。它的高亲和力结合状态。相反,在低亲和力和高亲和力受体状态下,溶液EPR都观察到了4-TOAC物质P的结合,这表明在存在GDP的情况下,肽具有更强的固定性。此外,为了更好地理解TOAC取代P物质的构象后果,因为它与受体结合和激活有关,构建了该肽的4-TOAC和9-TOAC的原子模型,并通过模拟退火计算了分子动力学探索TOAC取代对骨干结构的影响。

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