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Protein recognition of the S23906-1–DNA adduct by nuclear proteins: direct involvement of glyceraldehyde-3-phosphate dehydrogenase (GAPDH)

机译:核蛋白对S23906-1–DNA加合物的蛋白识别:3-磷酸甘油醛脱氢酶(GAPDH)的直接参与

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pIn a view to develop new DNA alkylating antitumour drugs, evaluating the precise mechanism of action and the molecular/cellular consequences of the alkylation is a point of major interest. The benzo-ib/i-acronycine derivative S23906-1 alkylates guanine nucleobases in the minor groove of the DNA helix and presents an original ability to locally open the double helix of DNA, which appears to be associated with its cytotoxic activity. However, the molecular mechanism linking adduct formation to cellular consequences is not precisely known. The objective of the present study was to identify proteins involved in the recognition and mechanism of action of S23906–DNA adducts. We found that GAPDH (glyceraldehyde-3-phosphate dehydrogenase) is a protein that binds to S23906-alkylated single-stranded, double-stranded and telomeric sequences in a drug-dependent and DNA sequence/structure-dependent manner. We used the CASTing (cyclic amplification of sequence targeting) method to identify GAPDH DNA-binding selectivity and then evaluated its binding to such selected S23906-alkylated sequences. At the cellular level, alkylation of S23906-1 results in an increase in the binding of GAPDH and its protein partner HMG (high-mobility group) B1 to the chromatin. Regarding the multiple roles of GAPDH in apoptosis and DNA repair, the cytotoxic and apoptotic activities of GAPDH were evaluated and present opposite effects in two different cellular models./p
机译:>为了开发新的DNA烷基化抗肿瘤药物,评估烷基化的确切作用机理和分子/细胞后果是人们的主要兴趣所在。苯并-b -b啶子碱衍生物S23906-1使DNA螺旋的小沟中的鸟嘌呤核苷碱基烷基化,并具有局部打开DNA双螺旋的原始能力,这似乎与其细胞毒性有关活动。然而,将加合物形成与细胞后果联系起来的分子机制尚不清楚。本研究的目的是鉴定参与S23906-DNA加合物识别和作用机理的蛋白质。我们发现GAPDH(甘油醛-3-磷酸脱氢酶)是一种以药物依赖性和DNA序列/结构依赖性方式与S23906烷基化的单链,双链和端粒序列结合的蛋白质。我们使用CASTing(序列靶向的循环扩增)方法鉴定GAPDH DNA结合选择性,然后评估其与此类选定S23906-烷基化序列的结合。在细胞水平上,S23906-1的烷基化导致GAPDH及其蛋白伴侣HMG(高迁移率基团)B1与染色质的结合增加。关于GAPDH在细胞凋亡和DNA修复中的多重作用,评估了GAPDH的细胞毒性和凋亡活性,并在两种不同的细胞模型中表现出相反的作用。

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