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Synthesis and in vitro antifolate activity of rotationally restricted aminopterin and methotrexate analogues

机译:旋转受限氨基蝶呤和甲氨蝶呤类似物的合成及其体外抗叶酸活性

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Heretofore unknown analogues of aminopterin (AMT) and methotrexate (MTX) in which free rotation of the amide bond between the phenyl ring and amino acid side chain is prevented by a CH2 bridge were synthesized and tested for in vitro antifolate activity. The K-i of the AMT analogue (9) against human dihydrofolate reductase (DHFR) was 34 pM, whereas that of the MTX analogue (10) was 2100 pM. Both compounds were less potent than the parent drugs. However, although the difference between AMT and MTX was < 2-fold, the difference between 9 and 10 was 62-fold, suggesting that the effect of N-10-methyl substitution is amplified in the bridged compounds. The K-i values of 9 and 10 as inhibitors of [H-3]MTX influx into CCRF-CEM human leukemia cells via the reduced folate carrier (RFC) were 0.28 and 1.1 muM, respectively. The corresponding K-i and K-t values determined earlier for AMT and MTX were 5.4 and 4.7 muM, respectively. Thus, in contrast to its unfavorable effect on DHFR binding, the CH2 bridge increased RFC binding. In a 72 h growth assay with CCRF-CEM cells, the IC50 valuess of 9 and 10 were 5.1 and 140 nM, respectively, a 27-fold difference that was qualitatively consistent with the observed combination of weaker DHFR binding and stronger RFC binding. Although rotationally restricted inhibitors of other enzymes of folate pathway enzymes have been described previously, 9 and 10 are the first reported examples of DHFR inhibitors of this type.
机译:迄今为止,合成了氨基蝶呤(AMT)和氨甲蝶呤(MTX)的未知类似物,其中通过CH2桥阻止了苯环和氨基酸侧链之间酰胺键的自由旋转,并测试了其体外抗叶酸活性。 AMT类似物(9)对人二氢叶酸还原酶(DHFR)的K-i为34 pM,而MTX类似物(10)的K-i为2100 pM。两种化合物的效力均低于母体药物。但是,尽管AMT和MTX之间的差异<2倍,但9和10之间的差异为62倍,这表明N-10-甲基取代的作用在桥接化合物中得到了放大。作为[H-3] MTX抑制剂通过还原叶酸载体(RFC)流入CCRF-CEM人白血病细胞的9和10的K-i值分别为0.28和1.1μM。先前针对AMT和MTX确定的相应K-i和K-t值分别为5.4和4.7μM。因此,与其对DHFR结合的不利影响相反,CH2桥增加了RFC结合。在使用CCRF-CEM细胞的72小时生长分析中,IC50值9和10分别为5.1和140 nM,相差27倍,与观察到的较弱的DHFR结合和较强的RFC结合相结合。尽管先前已经描述了叶酸途径酶的其他酶的旋转受限抑制剂,但第一个报道的此类DHFR抑制剂是9和10。

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