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Polar, functionalized guanine-O6 derivatives resistant to repair by O6-alkylguanine-DNA alkyltransferase: implications for the design of DNA-modifying drugs

机译:极性,功能化的鸟嘌呤-O6衍生物,可被O6-烷基鸟嘌呤-DNa烷基转移酶修复:对DNa修饰药物设计的影响

摘要

The protein O6-alkylguanine-DNA alkyltransferase (Atase) is responsible for the repair of DNA lesions generated by several clinically important anti-cancer drugs; this is manifest as active resistance in those cancer cell lines proficient in Atase expression. Novel O6-substituted guanine analogues have been synthesized, bearing acidic, basic and hydrogen bonding functional groups. In contrast to existing O6-modified purine analogues, such as methyl or benzyl, the new compounds were found to resist repair by Atase even when tested at concentrations much higher than O6-benzylguanine, a well-established Atase substrate active both in vitro and in vivo. The inactivity of the new purines as covalent substrates for Atase indicates that agents to deliver these groups to DNA would represent a new class of DNA-modifying drug that circumvents Atase-mediated resistance. © 2006 Elsevier SAS. All rights reserved.
机译:O6-烷基鸟嘌呤-DNA烷基转移酶蛋白(Atase)负责修复几种临床上重要的抗癌药物产生的DNA损伤。这在精通Atase表达的癌细胞系中表现为主动抗性。已经合成了带有酸性,碱性和氢键官能团的新型O6-取代的鸟嘌呤类似物。与现有的O6修饰的嘌呤类似物(例如甲基或苄基)相反,即使以比O6-苄基鸟嘌呤高得多的浓度(在体外和体内都具有活性的成熟的Atase底物)进行测试,新化合物仍能抵抗Atase的修复。体内。新嘌呤作为Atase的共价底物的无活性表明,将这些基团递送至DNA的药物将代表一类新型的DNA修饰药物,可绕过Atase介导的耐药性。 ©2006 Elsevier SAS。版权所有。

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