首页> 外文期刊>Journal of Medicinal Chemistry >Structure-activity relationships of pyridoxal phosphate derivatives as potent and selective antagonists of P2X1 receptors.
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Structure-activity relationships of pyridoxal phosphate derivatives as potent and selective antagonists of P2X1 receptors.

机译:吡ido醛磷酸衍生物作为P2X1受体的有效和选择性拮抗剂的结构活性关系。

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摘要

Novel analogues of the P2 receptor antagonist pyridoxal-5'-phosphate 6-azophenyl-2',5'-disulfonate (2) were synthesized and studied as antagonists in functional assays at recombinant rat P2X1, P2X2, and P2X3 receptors expressed in Xenopus oocytes (ion flux stimulation) and at turkey erythrocyte P2Y1 receptors (phospholipase C activation). Selected compounds were also evaluated as antagonists of ion flux and the opening of a large pore at the recombinant human P2X7 receptor. Modifications were made in the 4-aldehyde and 5'-phosphate groups of the pyridoxal moiety: i.e. a CH2OH group at the 4-position in pyridoxine was either condensed as a cyclic phosphate or phosphorylated separately to form a bisphosphate, which reduced potency at P2 receptors. 5-Methylphosphonate substitution, anticipated to increase stability to hydrolysis, preserved P2 receptor potency. At the 6-position, halo, carboxylate, sulfonate, and phosphonate variations made on the phenylazo ring modulated potency at P2 receptors. The p-carboxyphenylazo analogue, 4, of phosphate 2 displayed an IC50 value of 9 nM at recombinant P2X1 receptors and was 1300-, 16-, and > 10,000-fold selective for P2X1 versus P2X2, P2X3, and P2Y1 subtypes, respectively. The corresponding 5-methylphosphonate was equipotent at P2X1 receptors. The 5-methylphosphonate analogue containing a 6-[3,5-bis(methylphosphonate)]phenylazo moiety, 9, had IC50 values of 11 and 25 nM at recombinant P2X1 and P2X3 receptors, respectively. The analogue containing a phenylazo 4-phosphonate group, 11, was also very potent at both P2X1 and P2X3 receptors. However, the corresponding 2,5-disulfonate analogue, 10, was 28-fold selective for P2X1 versus P2X3 receptors. None of the analogues were more potent at P2X7 and P2Y1 receptors than 2, which acted in the micromolar range at these two subtypes.
机译:合成了P2受体拮抗剂吡ido醛5'-磷酸6-偶氮苯基-2',5'-二磺酸盐的新型类似物(2),并在非洲爪蟾卵母细胞中表达的重组大鼠P2X1,P2X2和P2X3受体的功能测定中作为拮抗剂进行了研究(离子通量刺激)和火鸡红细胞P2Y1受体(磷脂酶C激活)。还评估了选定的化合物作为离子通量和重组人P2X7受体大孔开口的拮抗剂。对吡ido醛部分的4-醛和5'-磷酸基团进行了修饰:即吡ido醇4-位的CH2OH基团被缩合成环状磷酸酯或被磷酸化以形成双磷酸酯,从而降低了P2的效价受体。 5-甲基膦酸酯取代有望提高水解稳定性,并保留P2受体效能。在6位上,苯偶氮环上的卤素,羧酸根,磺酸根和膦酸酯变体调节了P2受体的效价。磷酸酯2的p-羧苯基偶氮类似物4,在重组P2X1受体上的IC50值显示为9 nM,对P2X1,P2X2,P2X3和P2Y1亚型的选择性分别为1300、16和10,000倍以上。相应的5-甲基膦酸酯在P2X1受体上是等价的。含有6- [3,5-双(甲基膦酸酯)]苯基偶氮部分9的5-甲基膦酸酯类似物在重组P2X1和P2X3受体上的IC50值分别为11和25 nM。含有苯基偶氮4-膦酸酯基团11的类似物在P2X1和P2X3受体上也非常有效。然而,相对于P2X3受体,相应的2,5-二磺酸盐类似物10对P2X1受体的选择性是其28倍。在P2X7和P2Y1受体上,没有一个类似物比2更有效,它们在这两个亚型的微摩尔范围内起作用。

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