首页> 外文OA文献 >Synthesis and biological activities of tachykinin and opioid-related compounds, synthesis of unusual amino acids, and the investigations into the smooth muscle pharmacology of tachykinins.
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Synthesis and biological activities of tachykinin and opioid-related compounds, synthesis of unusual amino acids, and the investigations into the smooth muscle pharmacology of tachykinins.

机译:速激肽和阿片类相关化合物的合成及其生物学活性,异常氨基酸的合成以及速激肽的平滑肌药理学研究。

摘要

Eight cyclic analogues of Substance P were made in order to investigate the conformation of the C-terminal end of the peptide. These analogues were designed to test three literature models describing the active conformation of substance P. Although the potencies of the analogues were low (in the micromolar range), our results support Cotrait's and Hospital's model (1986). Several substance P antagonists were synthesized. These compounds did not demonstrate agonistic activity nor anatagonistic activity. The tryptophan side chain is contributing to the antagonistic activity of these analogues, and not just the chirality of the α-carbon. Highly potent and selective photoaffinity ligands of H-Tyr-D-Pen-Gly-Phe-D-Pen-OH (DPDPE) and D-Phe-Cys-Tyr-D-Trp-Lys-Thr-Pen-Thr-NH₂ (CTP) were synthesized. These compounds will be useful in the isolation of δ and μ opioid receptors. Several new amino acids designed and synthesized to contain both the natural amino acid side chain and a thiol group which can be used to make disulfide constraints. The racemic amino acids made were as follows: (1) 2-amino-4-methyl-2- [(p-methylbenzyl)thiomethyl] pentanoic acid; (2) 2-amino-2- [(p-methylbenzyl)thiomethyl] -3-phenylpropanoic acid; (3) 2-amino-e- [(p-methylbenzyl)thio] pentanoic acid; and (4) 2-amino-3- [(p-methylbenzyl)-thio] -3-phenyl-pentanoic acid. These amino acids will be useful in the conformational restriction of peptides. To investigate the δ-opioid receptor conformation proposed for DPDPE by Hruby et al. (1988) and the μ-opioid receptor conformation proposed for Tyr-c [Abu₂,Gly,Phe,Leu] by Mierke et al. (1988), constrained phenylalanine amino acids were incorporated into H-Try-D-Pen-Gly-Phe-D-Pen-OH (DPDPE) in the four position. Our results indicate that these models are correct. And in an investigation into the physical-chemical properties of the delta opioid receptor, our results suggest that the δ receptor topochemical site for the Phe⁴ residue contains a partial positive charge on its surface and has specific steric requirements.
机译:制备了八个物质P的环状类似物,以研究该肽C末端的构象。这些类似物旨在测试描述P物质活性构象的三种文献模型。尽管这些类似物的效力较低(在微摩尔范围内),但我们的结果支持Cotrait和Hospital的模型(1986年)。合成了几种P物质拮抗剂。这些化合物既没有表现出激动活性也没有表现出拮抗活性。色氨酸侧链不仅有助于α-碳的手性,而且还有助于这些类似物的拮抗活性。 H-Tyr-D-Pen-Gly-Phe-D-Pen-OH(DPDPE)和D-Phe-Cys-Tyr-D-Trp-Lys-Thr-Pen-Thr-NH 2的高效选择性光亲和配体CTP)。这些化合物可用于分离δ和μ阿片受体。设计和合成了几种新氨基酸,它们既包含天然氨基酸侧链又包含可用于形成二硫键的硫醇基。制备的外消旋氨基酸如下:(1)2-氨基-4-甲基-2-[(对甲基苄基)硫代甲基]戊酸; (2)2-氨基-2-[[(对甲基苄基)硫代甲基] -3-苯基丙酸; (3)2-氨基-e-[(对甲基苄基)硫代]戊酸; (4)2-氨基-3-[[(对甲基苄基)-硫代] -3-苯基-戊酸。这些氨基酸可用于肽的构象限制。为了研究Hruby等人为DPDPE提出的δ阿片受体构象。 (1988)和Mierke等人提出的Tyr-c [Abu 2,Gly,Phe,Leu]的μ阿片受体构象。 (1988),将受约束的苯丙氨酸氨基酸并入四个位置的H-Try-D-Pen-Gly-Phe-D-Pen-OH(DPDPE)中。我们的结果表明这些模型是正确的。在对δ阿片样物质受体的物理化学性质的研究中,我们的结果表明,苯丙氨酸残基的δ受体拓扑化学位点在其表面含有部分正电荷,并具有特定的空间要求。

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