首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Effect of methotrexate on intracellular folate pools in purified myeloid precursor cells from normal human bone marrow.
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Effect of methotrexate on intracellular folate pools in purified myeloid precursor cells from normal human bone marrow.

机译:甲氨蝶呤对正常人骨髓中纯化的髓样前体细胞中细胞内叶酸池的影响。

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摘要

We investigated the effects of the antifolate methotrexate on intracellular folate pools of human myeloid precursor cells (MPCs). Immature MPCs, representing 3.2% of the original marrow population, were selected from normal human bone marrow by immune rosetting. The intracellular folate pools were labeled by incubation with 5 X 10(-8) M [3H]5-formyl-FH4 and were quantitated by high performance liquid chromatography. The predominant folates were 5-methyl-tetrahydrofolate (5-methyl-FH4) (36%), 10-formyl-FH4 (41.4%), 5-formyl-FH4 (12.3%), and FH4 (10.3%). A 12-h exposure to 1 microM methotrexate (MTX) resulted in a 34% reduction in the intracellular concentration of 10-formyl-FH4, a 61% decrease in 5-formyl-FH4, and a 62% decrease in 5-methyl-FH4, as well as the appearance and progressive expansion of the FH2 and 10-formyl-FH2 pools. These changes were maximal after 4 h of incubation with MTX. Paralleling the changes in folates, particularly the increase in FH2, were a 64% reduction in myeloid colony formation and a 77% depression of de novo purine synthesis after 4 h of MTX. We conclude that MTX does not produce quantitative depletion of 10-formyl-FH4 and that its antipurine effect may be mediated by direct inhibition of de novo purine synthesis by FH2 and, at later time points, by MTX polyglutamates.
机译:我们研究了抗叶酸甲氨蝶呤对人髓样前体细胞(MPC)的细胞内叶酸池的影响。通过免疫玫瑰花结节法从正常人骨髓中选出未成熟的MPC,它们占原始骨髓总数的3.2%。通过与5 X 10(-8)M [3H] 5-甲酰基-FH4孵育来标记细胞内叶酸库,并通过高效液相色谱法进行定量。主要的叶酸是5-甲基-四氢叶酸(5-甲基-FH4)(36%),10-甲酰基-FH4(41.4%),5-甲酰基-FH4(12.3%)和FH4(10.3%)。暴露于1 microM甲氨蝶呤(MTX)12小时导致细胞内10-甲酰基-FH4浓度降低34%,5-甲酰基-FH4降低61%和5-甲基-FH4降低62% FH4,以及FH2和10-甲酰基-FH2库的外观和逐步扩展。与MTX孵育4小时后,这些变化最大。与叶酸变化特别是FH2增加平行的是,MTX 4小时后,髓样集落形成减少了64%,从头嘌呤合成减少了77%。我们得出结论,MTX不会产生10-甲酰基-FH4的定量消耗,并且其抗嘌呤作用可能是由FH2以及在以后的时间点由MTX聚谷氨酸直接抑制新生嘌呤合成所介导的。

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