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核苷-(5'→P)亚甲基双膦酸二硫代酯类似物的合成与化学性质。

Nucleoside-(5'→P) methylenebisphosphonodithioate analogues: synthesis and chemical properties.

机构信息

Department of Chemistry, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

J Org Chem. 2013 Sep 6;78(17):8320-9. doi: 10.1021/jo400931n. Epub 2013 Aug 12.

Abstract

Nucleoside-(5'→P) methylenebisphosphonodithioate analogues are bioisosteres of natural nucleotides. The potential therapeutic applications of these analogues are limited by their relative instability. With a view toward improving their chemical and metabolic stability as well as their affinity toward zinc ions, we developed a novel nucleotide scaffold, nucleoside-5'-tetrathiobisphosphonate. We synthesized P1-(uridine/adenosine-5')-methylenebisphosphonodithioate, 2 and 3, and P1,P2-di(uridine/adenosine-5')-methylenebisphosphonodithioate, 4 and 5. Using (1)H and (31)P NMR-monitored Zn(2+)/Mg(2+) titrations, we found that 5 coordinated Zn(2+) by both N7 nitrogen atoms and both dithiophosphonate moieties, whereas 3 coordinated Zn(2+) by an N7 nitrogen atom and Pβ. Both 3 and 5 did not coordinate Mg(2+) ions. (31)P NMR-monitored kinetic studies showed that 3 was more stable at pD 1.5 than 5, with t(1/2) of 44 versus 9 h, respectively, and at pD 11 both showed no degradation for at least 2 weeks. However, 5 was more stable than 3 under an air-oxidizing atmosphere, with t1/2 of at least 3 days versus 14 h, respectively. Analogues 3 and 5 were highly stable to NPP1,3 and NTPDase1,2,3,8 hydrolysis (0-7%). However, they were found to be poor ectonucleotidase inhibitors. Although 3 and 5 did not prove to be effective inhibitors of zinc-containing NPP1/3, which is involved in the pathology of osteoarthritis and diabetes, they may be promising zinc chelators for the treatment of other health disorders involving an excess of zinc ions.

摘要

核苷-(5'→P)亚甲基双膦酸二硫代酯类似物是天然核苷酸的生物等排体。这些类似物的潜在治疗应用受到其相对不稳定性的限制。为了提高它们的化学和代谢稳定性以及对锌离子的亲和力,我们开发了一种新型核苷酸支架,即核苷-5'-四硫代双膦酸。我们合成了 P1-(尿苷/腺苷-5')-亚甲基双膦酸二硫代酯 2 和 3,以及 P1,P2-二(尿苷/腺苷-5')-亚甲基双膦酸二硫代酯 4 和 5。通过 (1)H 和 (31)P NMR 监测的 Zn(2+)/Mg(2+)滴定,我们发现 5 通过两个 N7 氮原子和两个二硫代磷酸酯部分配位 Zn(2+),而 3 通过一个 N7 氮原子和 Pβ 配位 Zn(2+)。3 和 5 均不与 Mg(2+)离子配位。(31)P NMR 监测的动力学研究表明,在 pD 1.5 下,3 比 5 更稳定,t(1/2)分别为 44 小时和 9 小时,而在 pD 11 下,两者在至少 2 周内均无降解。然而,在有氧氧化气氛下,5 比 3 更稳定,t1/2 分别至少为 3 天和 14 小时。类似物 3 和 5 对 NPP1,3 和 NTPDase1,2,3,8 水解(0-7%)非常稳定。然而,它们被发现是低效的外核苷酸酶抑制剂。尽管 3 和 5 对参与骨关节炎和糖尿病病理的含锌 NPP1/3 不是有效的抑制剂,但它们可能是治疗涉及过量锌离子的其他健康障碍的有前途的锌螯合剂。

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