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首页> 外文期刊>Journal of Medicinal Chemistry >Chemical syntheses and biological studies on dimeric chimeras of oxytocin and the V(2)-antagonist, d(CH(2))(5)(D-Ile(2), Ile(4))arginine vasopressin.
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Chemical syntheses and biological studies on dimeric chimeras of oxytocin and the V(2)-antagonist, d(CH(2))(5)(D-Ile(2), Ile(4))arginine vasopressin.

机译:催产素和V(2)-拮抗剂,d(CH(2))(5)(D-Ile(2),Ile(4))精氨酸加压素的二聚体嵌合体的化学合成和生物学研究。

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Parallel and antiparallel heterodimers have been synthesized that combine into a single molecule the neurohypophyseal hormone oxytocin and the potent vasopressin V(2)-antagonist d(CH(2))(5)[D-Ile(2), Ile(4)]arginine vasopressin. Solid-phase synthesis with N(alpha)-9-fluorenylmethyloxycarbonyl (Fmoc) chemistry, featuring appropriate combinations of orthogonal protecting groups for the thiols [S-(N-methyl-N-phenylcarbamoyl)sulfenyl (Snm); S-acetamidomethyl (Acm); S-triphenylmethyl (Trt)], was used to assemble the required linear nonapeptide amide monomer intermediates, which were then brought together in defined ways by solution reactions to provide the two heterodimers. The first disulfide bridge was formed by a directed approach involving attack by the free thiol of the 1-beta-mercapto-beta, beta-cyclopentamethylenepropionic acid (Pmp) residue of one monomer onto the Snm group of a cysteine residue on the other monomer; the inverse directed strategy failed due to steric hindrance. The second disulfide bridge was formed by iodine co-oxidation of Cys(Acm) residues on adjacent chains. Biological studies revealed that both the parallel and antiparallel chimeras lack pressor activity, have low uterotonic activity, and have diuretic activities comparable to that of the monomeric V(2)-antagonist. Sodium excretion depends on experimental conditions. Thus, with a 4% water load, both chimeras display effects similar to that of an equimolar mixture of oxytocin and V(2)-antagonist, i.e., lower sodium excretion than that resulting from administration of oxytocin alone but higher than that when V(2)-antagonist was administered alone. However, when no water load was used, the parallel chimera proved to be more effective in promoting sodium excretion than either oxytocin alone or an equimolar mixture of oxytocin and V(2)-antagonist.
机译:已合成平行和反平行异二聚体,将神经下垂体催产素和强效加压素V(2)-拮抗剂d(CH(2))(5)[D-Ile(2),Ile(4)]结合为一个分子。精氨酸加压素。用Nα-9-芴基甲氧基羰基(Fmoc)化学进行固相合成,其特征在于硫醇[S-(N-甲基-N-苯基氨基甲酰基)亚磺酰基(Snm)的正交保护基的适当组合。 S-乙酰氨基甲基(Acm);使用S-三苯甲基(Trt)]组装所需的线性九肽酰胺单体中间体,然后通过溶液反应以定义的方式将它们结合在一起,以提供两种异二聚体。第一个二硫键是通过定向方法形成的,该方法涉及一个单体的1-β-巯基-β,β-环戊二甲基丙酸(Pmp)残基的游离硫醇攻击另一单体的半胱氨酸残基的Snm基团。逆向策略由于空间位阻而失败。第二个二硫键是通过相邻链上Cys(Acm)残基的碘共氧化形成的。生物学研究表明,平行和反平行嵌合体均缺乏升压活性,子宫内缩活性低,并且具有与单体V(2)拮抗剂相当的利尿活性。钠排泄取决于实验条件。因此,在4%的水负荷下,两种嵌合体都显示出与催产素和V(2)-拮抗剂的等摩尔混合物相似的效果,即钠排泄量低于单独使用催产素而产生的钠排泄量,但高于V(2)时。 2)-拮抗剂单独给药。但是,当不使用水负荷时,平行嵌合体被证明比单独使用催产素或催产素和V(2)-拮抗剂的等摩尔混合物能更有效地促进钠排泄。

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