Brooke J, Szabados E, Lyons S D, Goodridge R J, Harsanyi M C, Poiner A, Christopherson R I
Department of Biochemistry, University of Sydney, New South Wales, Australia.
Cancer Res. 1990 Dec 15;50(24):7793-8.
6-L-Thiodihydroorotate (TDHO) and 2-oxo-1,2,3,6-tetrahydropyrimidine-4,6-dicarboxylate (HDDP) are potent inhibitors of mammalian dihydroorotase in vitro (R. I. Christopherson, K. J. Schmalzl, E. Szabados, R. J. Goodridge, M. C. Harsanyi, M. E. Sant, E. M. Algar, J. E. Anderson, A. Armstrong, S. C. Sharma, W. A. Bubb, and S. D. Lyons, Biochemistry, 28: 463-470, 1989). Using human CCRF-CEM leukemia cells growing in culture, TDHO and HDDP as the free acids have 50% inhibitory concentration (IC50) values of 32 microM and greater than 1000 microM, respectively, whereas for TDHO methyl ester, the IC50 value is 25 microM, and for HDDP dimethyl ester, the IC50 value is 21 microM. These IC50 values were not affected by addition of dihydroorotate, uridine, or deoxycytidine to the culture medium. TDHO methyl ester (25 microM) had only slight inhibitory effects upon the dihydroorotase reaction of de novo pyrimidine biosynthesis in growing leukemia cells, cells arrested in G2 + M phases of the cell cycle. At 250 microM TDHO methyl ester, analysis of cell extracts by high-performance liquid chromatography showed that after 4 h carbamyl aspartate had accumulated from undetectable levels to 760 microM, whereas UTP decreased from 580 to 110 microM and CTP from 350 to 86 microM, indicating inhibition of dihydroorotase in growing leukemia cells. IMP accumulated from 63 to 350 microM, total guanylates increased while adenylates decreased, and the adenylate energy charge decreased from 0.91 to 0.69 after 4 h. The cellular concentration of 5-phosphoribosyl 1-pyrophosphate increased from 180 to 290 microM due to sparing from pyrimidine nucleotide biosynthesis resulting in complementary stimulation of the de novo purine pathway. HDDP dimethyl ester at concentrations of up to 250 microM had no discernable effect upon pyrimidine or purine nucleotide biosynthesis. At 25 microM HDDP-dimethyl ester, cells arrested in G2 + M phases initially, with accumulation of cells in G1/G0 at later times. These data suggest that the primary mechanisms of growth inhibition for TDHO and HDDP involve inhibition of cell cycle progression from late G2 or M phase to G1 phase and that blockade of the pyrimidine pathway by TDHO is a secondary effect found at higher concentrations.
6-L-硫代二氢乳清酸(TDHO)和2-氧代-1,2,3,6-四氢嘧啶-4,6-二羧酸(HDDP)在体外是哺乳动物二氢乳清酸酶的有效抑制剂(R. I. 克里斯托弗森、K. J. 施马尔茨尔、E. 萨巴多斯、R. J. 古德里奇、M. C. 哈萨尼、M. E. 桑特、E. M. 阿尔加、J. E. 安德森、A. 阿姆斯特朗、S. C. 夏尔马、W. A. 巴布和S. D. 莱昂斯,《生物化学》,28: 463 - 470, 1989)。使用在培养中生长的人CCRF - CEM白血病细胞,作为游离酸的TDHO和HDDP的50%抑制浓度(IC50)值分别为32微摩尔和大于1000微摩尔,而对于TDHO甲酯,IC50值为25微摩尔,对于HDDP二甲酯,IC50值为21微摩尔。这些IC50值不受向培养基中添加二氢乳清酸、尿苷或脱氧胞苷的影响。TDHO甲酯(25微摩尔)对生长中的白血病细胞、停滞在细胞周期G2 + M期的细胞中嘧啶从头生物合成的二氢乳清酸酶反应仅有轻微抑制作用。在250微摩尔TDHO甲酯时,通过高效液相色谱对细胞提取物进行分析表明,4小时后氨甲酰天冬氨酸从不可检测水平积累至760微摩尔,而尿苷三磷酸(UTP)从580降至110微摩尔,胞苷三磷酸(CTP)从350降至86微摩尔,表明生长中的白血病细胞中的二氢乳清酸酶受到抑制。次黄嘌呤单磷酸(IMP)从63积累至350微摩尔,总鸟苷酸增加而腺苷酸减少,4小时后腺苷酸能荷从0.91降至0.69。5 - 磷酸核糖1 - 焦磷酸的细胞浓度从180增加至290微摩尔,这是由于嘧啶核苷酸生物合成节省所致,从而对嘌呤从头合成途径产生互补性刺激。浓度高达250微摩尔的HDDP二甲酯对嘧啶或嘌呤核苷酸生物合成没有明显影响。在25微摩尔HDDP - 二甲酯时,细胞最初停滞在G2 + M期,后期G1/G0期细胞积累。这些数据表明,TDHO和HDDP生长抑制的主要机制涉及抑制细胞周期从G2晚期或M期向G1期的进展,并且TDHO对嘧啶途径的阻断是在较高浓度下发现的次要效应。