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阿拉伯糖基核苷酸对人白血病细胞中阿拉伯糖基核苷代谢的调节作用。

Modulation of arabinosylnucleoside metabolism by arabinosylnucleotides in human leukemia cells.

作者信息

Gandhi V, Plunkett W

机构信息

Department of Medical Oncology, University of Texas, M.D. Anderson Hospital and Tumor Institute at Houston 77030.

出版信息

Cancer Res. 1988 Jan 15;48(2):329-34.

PMID:3335008
Abstract

Previous studies have indicated that deoxycytidine kinase (dCK) is requisite and rate limiting in the phosphorylation of 1-beta-D-arabinofuranosylcytosine (ara-C) and 9-beta-D-arabinofuranosyl-2-fluoroadenine (F-ara-A) on the pathway to their respective cytotoxic 5'-triphosphates. In K562 cells, the rate of triphosphate accumulation was maximal during incubation with 10 microM ara-C (35 microM/h) and 300 microM F-ara-A (102 microM/h). Under these conditions, accumulation of cellular ara-CTP plateaued at about 110 microM after 3 h, whereas in separate cultures, F-ara-ATP continued to accumulate at a linear rate to cellular concentrations greater than 500 microM after 5 h. Other laboratories have demonstrated that dCK activity in cell-free extracts was inhibited by ara-CTP. To determine whether ara-CTP exhibited the same activity in whole cells, K562 cells were preincubated with ara-C to accumulate 110 microM ara-CTP. After washing into medium containing F-ara-A, the rate of F-ara-ATP accumulation was significantly decreased (37 microM/h). However, cells loaded with F-ara-ATP exhibited an increased rate of ara-CTP accumulation (110 microM/h) that resulted in cellular ara-CTP concentrations in excess of 400 microM after 5 h. This stimulation was proportional to the cellular concentration of F-ara-ATP, achieving a maximum effect between 75 and 100 microM. Phosphorylation of ara-C by cell-free extracts supplemented with physiological levels of ribo- and deoxyribonucleoside 5'-triphosphates was stimulated by addition of F-ara-ATP. The decreased rate of accumulation of products of dCK in intact cells containing 110 microM ara-CTP suggests that this active triphosphate may limit its own synthesis and phosphorylation of other substrates. In contrast, stimulation of the accumulation of ara-CTP in cells containing F-ara-ATP suggests new possibilities for the design of combination chemotherapy regimens.

摘要

先前的研究表明,脱氧胞苷激酶(dCK)在1-β-D-阿拉伯呋喃糖基胞嘧啶(ara-C)和9-β-D-阿拉伯呋喃糖基-2-氟腺嘌呤(F-ara-A)磷酸化生成各自具有细胞毒性的5'-三磷酸酯的途径中是必需的且限速。在K562细胞中,与10μM ara-C(35μM/h)和300μM F-ara-A(102μM/h)孵育期间,三磷酸酯积累速率最大。在这些条件下,细胞内ara-CTP在3小时后达到约110μM的平台期,而在单独培养中,F-ara-ATP在5小时后继续以线性速率积累至细胞浓度大于500μM。其他实验室已证明,无细胞提取物中的dCK活性受ara-CTP抑制。为了确定ara-CTP在完整细胞中是否表现出相同的活性,将K562细胞与ara-C预孵育以积累110μM ara-CTP。洗涤后加入含有F-ara-A的培养基,F-ara-ATP积累速率显著降低(37μM/h)。然而,加载有F-ara-ATP的细胞显示ara-CTP积累速率增加(110μM/h),导致5小时后细胞内ara-CTP浓度超过400μM。这种刺激与细胞内F-ara-ATP浓度成正比,在75至100μM之间达到最大效应。添加F-ara-ATP可刺激补充有生理水平的核糖和脱氧核糖核苷5'-三磷酸酯的无细胞提取物对ara-C的磷酸化。在含有110μM ara-CTP的完整细胞中,dCK产物积累速率降低表明这种活性三磷酸酯可能限制其自身的合成以及其他底物的磷酸化。相反,在含有F-ara-ATP的细胞中ara-CTP积累的刺激为联合化疗方案的设计提供了新的可能性。

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