Biochemical determinants of tumor sensitivity to 5-fluorouracil: ultrasensitive methods for the determination of 5-fluoro-2'-deoxyuridylate, 2'-deoxyuridylate, and thymidylate synthetase.

Biochemical determinants of tumor sensitivity to 5-fluorouracil: ultrasensitive methods for the determination of 5-fluoro-2'-deoxyuridylate, 2'-deoxyuridylate, and thymidylate synthetase.
复制标题

肿瘤对 5-氟尿嘧啶敏感性的生化决定因素:测定 5-氟-2-脱氧尿苷酸、2-脱氧尿苷酸和胸苷酸合成酶的超灵敏方法。

DOI:
--
复制
发表时间:
1979
影响因子:
11.1
通讯作者:
C. Heidelberger
C. Heidelberger
中科院分区:
综合性期刊1区
文献类型:
--
作者:
R. Moran;C. P. Spears;C. Heidelberger

文献摘要

被引文献

相似文献

已经开发了测量FdUMP(5-FUra的活性代谢物)、胸苷酸合成酶(TMP合成酶; 5,10-亚甲基四氢叶酸:dUMP C-甲基转移酶,EC 2.1.1.45)(该抗代谢物的靶酶)和dUMP(与FdUMP竞争结合TMP合成酶的底物)的技术。通过使用均质干酪乳杆菌/MTX TMP合成酶作为结合蛋白,可以用竞争性配体结合测定定量低至0.02 pmol的FdUMP。TMP合成酶的新结合测定允许检测0.005 pmol的酶。用5,10-亚甲基[(14)C]四氢叶酸盐将dUMP定量酶促转化为[甲基-(14)C]-TMP。干酪TMP合成酶用于dUMP测定,灵敏度为10 pmol。培养的CCRF-CEM人淋巴母细胞白血病细胞在暴露于30 μ M 5-FUra后11小时内形成高水平的FdUMP(2.6nmol/10(9)个细胞)。肿瘤细胞TMP合成酶水平下降,然后出现游离FdUMP。细胞内dUMP池在几种肿瘤细胞系的生长培养物中较低(2-5 nmol/10(9)个细胞),但在酶水平降低后暴露于5-FUra后,CCRF-CEM细胞中迅速扩增。所描述的方法足够灵敏,可以在细胞培养物或人肿瘤的穿刺活检样品中测量5-FUra作用的这些生物化学参数。
Techniques have been developed to measure FdUMP, the active metabolite of 5-FUra; thymidylate synthetase (TMP synthase; 5,10-methylenetetrahydrofolate:dUMP C-methyltransferase, EC 2.1.1.45), the target enzyme for this antimetabolite; and dUMP, the substrate that competes with FdUMP for binding to TMP synthetase. As little as 0.02 pmol of FdUMP can be quantitated with a competitive ligand binding assay by using homogeneous Lactobacillus casei/MTX TMP synthetase as a binding protein. A new binding assay for TMP synthetase allows detection of 0.005 pmol of enzyme. The quantitative enzymatic conversion of dUMP to [methyl-(14)C]-TMP using 5,10-methylene[(14)C]tetrahydrofolate by pure L. casei TMP synthetase is used as an assay for dUMP with a sensitivity of 10 pmol. Cultured CCRF-CEM human lymphoblastic leukemia cells formed high levels of FdUMP (2.6 nmol per 10(9) cells) within 11 hr after exposure to 30 muM 5-FUra. Tumor cell TMP synthetase levels dropped, and then free FdUMP appeared. The intracellular dUMP pool was low (2-5 nmol per 10(9) cells) in logarithmically growing cultures of several tumor cell lines but expanded rapidly in CCRF-CEM cells on exposure to 5-FUra after enzyme levels decreased. The levels of dUMP found after exposure to 5-FUra are sufficient to severely retard inhibition of TMP synthetase by FdUMP.The methods described are sufficiently sensitive to allow these biochemical parameters of 5-FUra action to be measured in cell culture or in needle biopsy samples of human tumors.