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N3-取代的碳硼核苷胸腺嘧啶生物缀合物的合成及其作为重组人胸苷激酶 1 底物的评价。

Synthesis of N3-substituted carboranyl thymidine bioconjugates and their evaluation as substrates of recombinant human thymidine kinase 1.

机构信息

Division of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Eur J Med Chem. 2013 Feb;60:456-68. doi: 10.1016/j.ejmech.2012.11.041. Epub 2012 Dec 5.

Abstract

Four different libraries of overall twenty three N3-substituted thymidine (dThd) analogues, including eleven 3-carboranyl thymidine analogues (3CTAs), were synthesized. The latter are potential agents for Boron Neutron Capture Therapy (BNCT) of cancer. Linker between the dThd scaffold and the m-carborane cluster at the N3-position of the 3CTAs contained amidinyl-(3e and 3f), guanidyl-(7e-7g), tetrazolylmethyl-(9b1/2-9d1/2), or tetrazolyl groups (11b1/2-11d1/2) to improve human thymidine kinase 1 (hTK1) substrate characteristics and water solubilities compared with 1st generation 3CTAs, such as N5 and N5-2OH. The amidinyl- and guanidyl-type N3-substitued dThd analogues (3a-3f and 7a-7g) had hTK1 phosphorylation rates of <30% relative to that of dThd, the endogenous hTK1 substrate, whereas the tetrazolyl-type N3-substitued dThd analogues (9a, 9b1/2-9d1/2 and 11a, 11b1/2-11d1/2) had relative phosphorylation rates (rPRs) of >40%. Compounds 9a, 9b1/2-9d1/2 and 11a, 11b1/2-11d1/2 were subjected to in-depth enzyme kinetics studies and the obtained rk(cat)/K(m) (k(cat)/K(m) relative to that of dThd) ranged from 2.5 to 26%. The tetrazolyl-type N3-substitued dThd analogues 9b1/2 and 11d1/2 were the best substrates of hTK1 with rPRs of 52.4% and 42.5% and rk(cat)/K(m) values of 14.9% and 19.7% respectively. In comparison, the rPR and rk(cat)/K(m) values of N5-2OH in this specific study were 41.5% and 10.8%, respectively. Compounds 3e and 3f were >1900 and >1500 times, respectively, better soluble in PBS (pH 7.4) than N5-2OH whereas solubilities for 9b1/2-9d1/2 and 11b1/2-11d1/2 were only 1.3-13 times better.

摘要

合成了四个不同的共有 23 个 N3-取代的胸苷(dThd)类似物的文库,其中包括 11 个 3-咔硼烷胸苷类似物(3CTAs)。后者是硼中子俘获疗法(BNCT)治疗癌症的潜在药物。在 N3-位置连接 dThd 支架和 m-咔硼烷簇的连接子包含脒基(3e 和 3f)、胍基(7e-7g)、四唑基甲基(9b1/2-9d1/2)或四唑基(11b1/2-11d1/2),以提高人类胸苷激酶 1(hTK1)的底物特性和水溶性,与第一代 3CTAs(如 N5 和 N5-2OH)相比。脒基和胍基型 N3-取代的 dThd 类似物(3a-3f 和 7a-7g)的 hTK1 磷酸化率相对低于内源性 hTK1 底物 dThd 的 30%,而四唑基型 N3-取代的 dThd 类似物(9a、9b1/2-9d1/2 和 11a、11b1/2-11d1/2)的相对磷酸化率(rPR)则大于 40%。将化合物 9a、9b1/2-9d1/2 和 11a、11b1/2-11d1/2 进行了深入的酶动力学研究,获得的 rk(cat)/K(m)(相对于 dThd 的 k(cat)/K(m))范围为 2.5 至 26%。四唑基型 N3-取代的 dThd 类似物 9b1/2 和 11d1/2 是 hTK1 的最佳底物,相对磷酸化率(rPR)分别为 52.4%和 42.5%,rk(cat)/K(m)值分别为 14.9%和 19.7%。相比之下,在本研究中,N5-2OH 的 rPR 和 rk(cat)/K(m)值分别为 41.5%和 10.8%。化合物 3e 和 3f 在 PBS(pH 7.4)中的溶解度分别比 N5-2OH 高 1900 倍和 1500 倍以上,而 9b1/2-9d1/2 和 11b1/2-11d1/2 的溶解度仅分别提高了 1.3-13 倍。

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