Suppr超能文献

2'-C-氰基-2'-脱氧-1-β-D-阿拉伯呋喃糖基胞嘧啶:一种新型抗癌核苷类似物,可导致DNA链断裂和G(2)期阻滞。

2'-C-cyano-2'-deoxy-1-beta-D-arabino-pentofuranosylcytosine: a novel anticancer nucleoside analog that causes both DNA strand breaks and G(2) arrest.

作者信息

Azuma A, Huang P, Matsuda A, Plunkett W

机构信息

Department of Experimental Therapeutics, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Mol Pharmacol. 2001 Apr;59(4):725-31. doi: 10.1124/mol.59.4.725.

Abstract

The mechanism of 2'-C-cyano-2'-deoxy-1-beta-D-arabino-pentofuranosylcytosine (CNDAC) action was investigated in human lymphoblastoid CEM cells and myeloblastic leukemia ML-1 cells. CNDAC was metabolized to its 5'-triphosphate and incorporated into DNA, which was associated with inhibition of DNA synthesis. After incubation of cells with [(3)H]CNDAC, metabolites were detected in 3'-->5' phosphodiester linkage and at the 3' terminus of cellular DNA. Specific enzymatic hydrolysis of DNA demonstrated that the parent nucleoside and its 2'-epimer 2'-C-cyano-2'-deoxy-2-ribo-pentofuranosylcytosine accounted for approximately 65% of the total analogs incorporated into DNA and essentially all of the drug in the 3'-->5' phosphodiester linkage. In contrast, all detectable radioactivity at 3' termini was associated with 2'-C-cyano-2',3'-didehydro-2',3'-dideoxycytidine. This de facto DNA chain-terminating nucleotide arises from an electronic characteristic and cleavage of the 3'-phosphodiester bond subsequent to the addition of a nucleotide to the incorporated CNDAC moiety by beta-elimination, a process that generates a single strand break in DNA. Investigation of the biological consequences of these actions indicated that, after incubation with cytostatic concentrations of CNDAC, cell cycle progression was delayed during S phase, but that cells arrested predominantly in the G(2) phase. This differed from the S phase-arresting actions of ara-C and gemcitabine, other deoxycytidine analogs that inhibit DNA replication but do not cause strand breaks. Thus, once incorporated into DNA, the CNDAC molecule appears to act by a dual mechanism that 1) delays the progress of further DNA replication, but 2) upon addition of a deoxynucleotide results in the conversion of the incorporated analog to a de facto DNA chain terminator at the 3' terminus of a single strand break. It is likely that DNA strand breaks trigger cell cycle arrest in G(2).

摘要

在人淋巴母细胞性CEM细胞和髓母细胞白血病ML-1细胞中研究了2'-C-氰基-2'-脱氧-1-β-D-阿拉伯呋喃糖基胞嘧啶(CNDAC)的作用机制。CNDAC被代谢为其5'-三磷酸形式并掺入DNA,这与DNA合成的抑制相关。在用[³H]CNDAC孵育细胞后,在3'→5'磷酸二酯键和细胞DNA的3'末端检测到代谢产物。DNA的特异性酶水解表明,母体核苷及其2'-差向异构体2'-C-氰基-2'-脱氧-2-核糖呋喃糖基胞嘧啶约占掺入DNA的总类似物的65%,并且基本上是3'→5'磷酸二酯键中的所有药物。相比之下,3'末端所有可检测到的放射性都与2'-C-氰基-2',3'-二脱氢-2',3'-二脱氧胞苷相关。这种事实上的DNA链终止核苷酸源于一种电子特性以及在通过β-消除将核苷酸添加到掺入的CNDAC部分后3'-磷酸二酯键的断裂,该过程在DNA中产生单链断裂。对这些作用的生物学后果的研究表明,在用细胞生长抑制剂浓度的CNDAC孵育后,细胞周期进程在S期延迟,但细胞主要停滞在G₂期。这与阿糖胞苷和吉西他滨的S期阻滞作用不同,其他抑制DNA复制但不引起链断裂的脱氧胞苷类似物。因此,一旦掺入DNA,CNDAC分子似乎通过双重机制起作用,即1)延迟进一步DNA复制的进程,但2)在添加脱氧核苷酸后导致掺入的类似物在单链断裂的3'末端转化为事实上的DNA链终止剂。DNA链断裂可能触发细胞周期在G₂期停滞。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验