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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Photoaffinity Isolation and Identification of Proteins in Cancer Cell Extracts that Bind to Platinum-Modified DNA
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Photoaffinity Isolation and Identification of Proteins in Cancer Cell Extracts that Bind to Platinum-Modified DNA

机译:光亲和力分离和鉴定与铂修饰的DNA结合的癌细胞提取物中的蛋白质

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摘要

The activity of the anticancer drug cisplatin is a consequence of its ability to bind DNA. Platinum adducts bend and unwind the DNA duplex, creating recognition sites for nuclear proteins. Following DNA damage recognition, the lesions will either be repaired, facilitating cell viability, or if repair is unsuccessful and the Pt adduct interrupts vital cellular functions, apoptosis will follow. With the use of the benzophenone-modified cisplatin analogue Pt-BP6, 25 bp DNA duplexes containing either a 1,2-d-(G*pG*) intrastrand or a 1,3-d(G*pTpG*) intrastrand crosslink were synthesized, where the asterisks designate platinated nucleobases. Proteins having affinity for these platinated DNAs were photocrosslinked and identified in cervical, testicular, pancreatic and bone cancer-cell nuclear extracts. Proteins identified in this manner include the DNA repair factors RPA1, Ku70, Ku80, Msh2, DNA ligase III, PARP-1, and DNA-PKcs, as well as HMG-domain proteins HMGB1, HMGB2 HMGB3, and UBF1. The latter strongly associate with the 1,2-d(G*pG*) adduct and weakly or not at all with the 1,3-d(G*pTpG*) adduct. The nucleotide excision repair protein RPA1 was photocrosslinked only by the probe containing a 1,3-d(G*pTpG*) intrastrand crosslink. The affinity of PARP-1 for platinum-modified DNA was established using this type of probe for the first time. To ensure that the proteins were not photocrosslinked because of an affinity for DNA ends, a 90-base dumbbell probe modified with Pt-BP6 was investigated. Photocrosslinking experiments with this longer probe revealed the some proteins, as well as some additional proteins involved in chromatin remodeling, transcription, or repair. These findings reveal a more complete list of proteins involved in the early steps of the mechanism of action of the cisplatin and its close analogue carboplatin than previously was available.
机译:抗癌药顺铂的活性是其结合DNA的能力的结果。铂加合物弯曲并展开DNA双链体,形成核蛋白的识别位点。识别DNA损伤后,将修复病变,促进细胞活力,或者如果修复失败且Pt加合物中断重要的细胞功能,则会发生凋亡。通过使用二苯甲酮修饰的顺铂类似物Pt-BP6,可以得到包含1,2-d-(G * pG *)内链或1,3-d(G * pTpG *)内链交联的25 bp DNA双链体。合成,其中星号表示镀铂核碱基。对这些镀铂DNA具有亲和力的蛋白质进行光交联,并在子宫颈,睾丸,胰腺和骨癌细胞核提取物中进行鉴定。以这种方式鉴定的蛋白质包括DNA修复因子RPA1,Ku70,Ku80,Msh2,DNA连接酶III,PARP-1和DNA-PKcs,以及HMG域蛋白HMGB1,HMGB2 HMGB3和UBF1。后者与1,2-d(G * pG *)加合物强烈相关,而与1,3-d(G * pTpG *)加合物几乎无关或根本不相关。核苷酸切除修复蛋白RPA1仅通过包含1,3-d(G * pTpG *)链内交联的探针进行光交联。首次使用这种类型的探针建立了PARP-1对铂修饰的DNA的亲和力。为了确保蛋白质不会由于对DNA末端的亲和力而进行光交联,研究了使用Pt-BP6修饰的90个碱基的哑铃探针。用这种更长的探针进行的光交联实验揭示了一些蛋白质,以及与染色质重塑,转录或修复有关的其他蛋白质。这些发现揭示了与以前可获得的顺铂及其紧密类似物卡铂作用机理的早期阶段有关的蛋白质的更完整列表。

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