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三磷酸氟达拉滨对CCRF-CEM白血病细胞中引物RNA形成的抑制作用。

Inhibition of primer RNA formation in CCRF-CEM leukemia cells by fludarabine triphosphate.

作者信息

Catapano C V, Chandler K B, Fernandes D J

机构信息

Department of Biochemistry, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, North Carolina 27103.

出版信息

Cancer Res. 1991 Apr 1;51(7):1829-35.

PMID:1706219
Abstract

The effects of fludarabine triphosphate (Fara-ATP), 1-beta-D-arabinofuranosylcytosine 5'-triphosphate (ara-CTP), and aphidicolin on primer RNA and DNA synthesis in human CCRF-CEM leukemia cells were investigated. RNA-primed Okazaki fragment synthesis was monitored by first incubating whole cell lysates for 10 min in the presence or absence of the compound and then following the incorporation of [alpha-32P]ATP and [3H]dTTP into the primer RNA and DNA portions, respectively, of the Okazaki fragments. In whole cell lysates the degree of DNA synthesis inhibition induced by Fara-ATP was directly related to the extent of primer RNA synthesis inhibition over the entire range of Fara-ATP concentrations tested (10-50 microM). In contrast, primer RNA formation was stimulated by concentrations of ara-CTP (25-200 microM) and aphidicolin (0.5-5 micrograms/ml) that inhibited DNA synthesis. The primer RNA recovered from cell lysates incubated with either Fara-ATP, ara-CTP, or aphidicolin was of normal length, predominately 11 nucleotides. Fara-ATP was a more potent inhibitor of the polydeoxythymidylate primase activity than of the DNA polymerase alpha/delta activities present in the 100,000 x g supernatants of CCRF-CEM cells. Fara-ATP was a noncompetitive inhibitor of DNA primase with respect to ATP [50% inhibitory concentration, 2.3 +/- 0.3 (SD) microM, Ki = 6.1 +/- 0.3 (SE) microM] and the Km(ATP)/Ki (Fara-ATP) was 25. The 50% inhibitory concentration values of Fara-ATP for DNA polymerases alpha/delta activities on calf thymus DNA were 43 +/- 1.6 (SD) microM and greater than 100 microM with respect to dATP and dTTP. The effects of ara-CTP and aphidicolin on these enzymes were opposite those seen with Fara-ATP, since 50% inhibitory concentrations of either ara-CTP or aphidicolin for DNA polymerases alpha/delta did not inhibit polydeoxythymidylate primase activity. The results provide evidence that fludarabine phosphate blocks DNA synthesis in CCRF-CEM cells through inhibition of primer RNA formation. In contrast, the accumulation of primer RNA and RNA-primed Okazaki fragments that is induced by ara-CTP and aphidicolin could lead to the rereplication and amplification of chromosomal DNA segments.

摘要

研究了三磷酸氟达拉滨(Fara-ATP)、1-β-D-阿拉伯呋喃糖基胞嘧啶5'-三磷酸(ara-CTP)和阿非科林对人CCRF-CEM白血病细胞中引物RNA和DNA合成的影响。通过先在有或无化合物存在的情况下将全细胞裂解物孵育10分钟,然后分别跟踪[α-32P]ATP和[3H]dTTP掺入冈崎片段的引物RNA和DNA部分,来监测RNA引发的冈崎片段合成。在全细胞裂解物中,Fara-ATP诱导的DNA合成抑制程度在测试的整个Fara-ATP浓度范围(10 - 50 microM)内与引物RNA合成抑制程度直接相关。相比之下,ara-CTP(25 - 200 microM)和阿非科林(0.5 - 5微克/毫升)的浓度在抑制DNA合成的同时却刺激了引物RNA的形成。从与Fara-ATP、ara-CTP或阿非科林孵育的细胞裂解物中回收的引物RNA长度正常,主要为11个核苷酸。Fara-ATP对CCRF-CEM细胞100,000× g上清液中存在的聚脱氧胸苷酸引发酶活性的抑制作用比对DNA聚合酶α/δ活性的抑制作用更强。Fara-ATP是DNA引发酶相对于ATP的非竞争性抑制剂[50%抑制浓度,2.3±0.3(标准差)微摩尔,Ki = 6.1±0.3(标准误)微摩尔],且Km(ATP)/Ki(Fara-ATP)为25。Fara-ATP对小牛胸腺DNA上DNA聚合酶α/δ活性的50%抑制浓度值,相对于dATP为43±1.6(标准差)微摩尔,相对于dTTP大于100微摩尔。ara-CTP和阿非科林对这些酶的影响与Fara-ATP相反,因为ara-CTP或阿非科林对DNA聚合酶α/δ的50%抑制浓度并未抑制聚脱氧胸苷酸引发酶活性。结果提供了证据表明磷酸氟达拉滨通过抑制引物RNA形成来阻断CCRF-CEM细胞中的DNA合成。相比之下,ara-CTP和阿非科林诱导的引物RNA和RNA引发的冈崎片段积累可能导致染色体DNA片段的再复制和扩增。

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