首页> 外文期刊>Biochimie >THE STEREOSPECIFIC CYTOTOXIC POTENCY OF (6R) AND (6S) 15,10-DIDEAZATETRAL HYDROFOLATE CORRELATES WITH CELLULAR FOLYLPOLYGLUTAMATE SYNTHETASE LEVELS
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THE STEREOSPECIFIC CYTOTOXIC POTENCY OF (6R) AND (6S) 15,10-DIDEAZATETRAL HYDROFOLATE CORRELATES WITH CELLULAR FOLYLPOLYGLUTAMATE SYNTHETASE LEVELS

机译:(6R)和(6S)15,10-二氮杂萘甲酸氢叶酸酯与细胞羟丙基聚谷氨酸合成酶水平的立体定向细胞毒性

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The de novo purine synthesis inhibitor 5,10-dideazatetrahydrofolate (DDATHF) has previously been shown to inhibit the growth of mouse L1210 and human CCRF-CEM leukemia cells. The present study demonstrates that both the 6R and 6S diastereomers of DDATHF are also cytotoxic to mammalian cells in a stereospecific manner. The cytotoxic potency of (6R)-DDATHF (also known as Lometrexol) towards different cell lines varied by approximately 14-fold and that of (6S)-DDATHF by as much as 156-foId. Compared to (6R)-DDATHF, (6S)-DDATHF was 6.0- and 7.2-fold more cytotoxic to human WiDr colon adenocarcinoma and Chinese hamster ovary (CHO) cells, respectively, and only 1.5- and 2.0-fold more cytotoxic to human T24 bladder carcinoma and mouse L1210 leukemia cells, respectively. However, compared to (6S)-DDPATHF, (6R)-DDATHF was 8.7- and 6.9-fold more cytotoxic to C3H/10T1/2 clone 8 and clone 16 mouse fibroblasts, respectively. Weak inhibition of aminoimidazolecarboximide ribonucleotide formyltransferase (AICARFT, EC 2.1.2.3) appeared to have little role in the cytotoxicity of DDATHF diastereomers to WiDr cells during a 24-h exposure. Although glycinamide ribonucleotide formyltransferase (GARFT, EC 2.1.21) is the main biochemical target of DDATHF, DDATHF stereoisomers' cytotoxic potency showed no clear negative correlation with cellular GARFT levels. However, cellular folylpolyglutamate synthetase (FPGS, EC 6.3.2.17) levels correlated with cytotoxic potency in a positive manner. Surprisingly; two enzyme-dose/DDATHF LD(90)-response curves were observed for FPGS corresponding to differences in (6R) and (6S)-DDATHF cytotoxic potency among the six cell lines studied. [References: 22]
机译:嘌呤从头合成抑制剂5,10-二叠氮基氢叶酸(DDATHF)先前已显示出可抑制小鼠L1210和人CCRF-CEM白血病细胞的生长。本研究表明,DDATHF的6R和6S非对映异构体也以立体特异性方式对哺乳动物细胞具有细胞毒性。 (6R)-DDATHF(也称为Lometrexol)对不同细胞系的细胞毒性效力相差约14倍,而(6S)-DDATHF的细胞毒性效力相差156-foId。与(6R)-DDATHF相比,(6S)-DDATHF对人WiDr结肠腺癌细胞和中国仓鼠卵巢(CHO)细胞的细胞毒性分别高6.0和7.2倍,对人的细胞毒性仅高1.5和2.0倍T24膀胱癌和小鼠L1210白血病细胞分别。但是,与(6S)-DDPATHF相比,(6R)-DDATHF对C3H / 10T1 / 2克隆8和克隆16小鼠成纤维细胞的细胞毒性分别高8.7和6.9倍。在24小时的暴露过程中,对氨基咪唑羧酰亚胺核糖核苷酸甲酰基转移酶(AICARFT,EC 2.1.2.3)的弱抑制似乎对DDATHF非对映异构体对WiDr细胞的细胞毒性几乎没有作用。尽管甘氨酰胺核糖核苷酸甲酰基转移酶(GARFT,EC 2.1.21)是DDATHF的主要生化靶标,但DDATHF立体异构体的细胞毒性潜能与细胞GARFT水平没有明显的负相关。但是,细胞中的叶酰聚谷氨酸合成酶(FPGS,EC 6.3.2.17)水平与细胞毒性潜能呈正相关。出奇;观察到FPGS的两条酶-剂量/ DDATHF LD(90)-响应曲线,对应于所研究的六个细胞系之间的(6R)和(6S)-DDATHF细胞毒性效力的差异。 [参考:22]

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