Marquez V E, Tseng C K, Gebeyehu G, Cooney D A, Ahluwalia G S, Kelley J A, Dalal M, Fuller R W, Wilson Y A, Johns D G
J Med Chem. 1986 Sep;29(9):1726-31. doi: 10.1021/jm00159a027.
Thiazole-4-carboxamide adenine dinucleotide (TAD), the active metabolite of the oncolytic C-nucleoside tiazofurin (TR), is susceptible to phosphodiesteratic breakdown by a unique phosphodiesterase present at high levels in TR-resistant tumors. Since accumulation of TAD, as regulated by its synthetic and degradative enzymes, appears to be an important determinant for sensitivity to the drug, a series of hydrolytically resistant phosphonate analogues of TAD were synthesized with the intent of producing more stable compounds with an ability to inhibit IMP dehydrogenase equivalent to TAD itself. Isosteric phosphonic acid analogues of TR and adenosine nucleotides were coupled with activated forms of AMP and TR monophosphate to give dinucleotides 2 and 4. Coupling of protected adenosine 5'-(alpha, beta-methylene)diphosphate with isopropylidene-TR in the presence of DCC afforded compound 3 after deprotection. These compounds are more resistant than TAD toward hydrolysis and still retain potent activity against IMP dehydrogenase in vitro. beta-Methylene-TAD (3), the most stable of the TAD phosphonate analogues, produced a depletion of guanine nucleotide pools in an experimentally induced TR-resistant P388 tumor variant that was superior to that obtained with TR in the corresponding sensitive line.
噻唑 - 4 - 甲酰胺腺嘌呤二核苷酸(TAD)是溶瘤性C - 核苷替加氟(TR)的活性代谢产物,易被TR耐药肿瘤中高水平存在的一种独特磷酸二酯酶进行磷酸二酯键断裂分解。由于TAD的合成和降解酶所调控的TAD积累似乎是对该药物敏感性的重要决定因素,因此合成了一系列TAD的水解抗性膦酸类似物,目的是生产出更稳定的化合物,其抑制肌苷酸脱氢酶的能力与TAD本身相当。将TR和腺苷核苷酸的等排膦酸类似物与AMP和TR单磷酸的活化形式偶联,得到二核苷酸2和4。在DCC存在下,将受保护的腺苷5' - (α,β - 亚甲基)二磷酸与异亚丙基 - TR偶联,脱保护后得到化合物3。这些化合物比TAD更耐水解,并且在体外仍保留对肌苷酸脱氢酶的强效活性。β - 亚甲基 - TAD(3)是TAD膦酸类似物中最稳定的,在实验诱导的TR耐药P388肿瘤变体中使鸟嘌呤核苷酸池耗竭,其效果优于相应敏感细胞系中TR所产生的效果。