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首页> 外文期刊>Biochemistry >Single d(GpG)/cis-diammineplatinum(II) adduct-induced inhibition of DNA polymerization.
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Single d(GpG)/cis-diammineplatinum(II) adduct-induced inhibition of DNA polymerization.

机译:单个d(GpG)/顺式二氨铂(II)加合物诱导的DNA聚合抑制。

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摘要

A 44 nucleotide DNA template containing a single site-specifically placed cisplatin adduct (cis-[Pt(NH3)2{d(GpG)-N7(1),-N7(2)}]) was annealed with a primer, positioning its 3'-end four bases before the adduct in the template strand. DNA polymerization in the presence of all four nucleotides revealed that both HIV-1 reverse transcriptase (RT) and T7 DNA polymerase strongly paused at one nucleotide preceding the first platinated guanine and at the positions opposite the two platinated guanines. Analysis of single nucleotide incorporation at each pause site showed that polymerization occurs with biphasic kinetics. A small percentage of DNA was bound productively, providing a small amplitude (1-3%) of a fast phase of polymerization, whereas most of the bound DNA (1-34%) was positioned at the pause site in a nonproductive manner and therefore elongated slowly (0.04-0.06 s-1). DNA substrates annealed to the cisplatin-modified template bind to HIV-1 RT with an affinity (10-20 nM) similar to that of unmodified substrates (6-9 nM). The cisplatin-DNA cross-link moderately weakened DNA binding to T7 DNA polymerase (12-115 nM) but significantly slowed the rate of incorporation of the next nucleotide (2-7 s-1 ), with larger effects closer to the cisplatin-DNA adduct. The crystal structure of the same cisplatin-DNA adduct [Takahara, P. M., Frederick, C. A., and Lippard, S. J. (1996) J. Am. Chem. Soc. 118, 12309-12321] reveals not only the bent DNA duplex but also the propeller twisted base pairs near the cisplatin-DNA adduct. The twisted base pairs may cause misalignment of the cisplatin-modified DNA at the binding cleft of T7 DNA polymerase and significantly slow the rate of the protein conformational change preceding polymerization, leading to the slight accumulation of intermediates within five base pairs of the adduct. The ground-state binding of the next correct nucleotide to the enzyme.DNA complex was weakened by the adduct with T7 DNA polymerase but unchanged with HIV-1 RT at sites other than the three strong pause sites. Nucleotide binding to both enzymes at the three strong pause sites was significantly weaker and less selective.
机译:使用引物对包含单个位点特异性放置的顺铂加合物(顺式[[Pt(NH3)2 {d(GpG)-N7(1),-N7(2)}])的44个核苷酸的DNA模板进行退火,将其定位在模板链的加合物之前的3'-末端有四个碱基。在所有四个核苷酸均存在的情况下进行的DNA聚合反应表明,HIV-1逆转录酶(RT)和T7 DNA聚合酶都强烈停在第一个镀铂鸟嘌呤之前的一个核苷酸以及与两个镀铂鸟嘌呤相对的位置。在每个停顿位点的单核苷酸掺入分析表明,聚合反应具有双相动力学。一小部分的DNA被有效地结合,从而提供了一个小幅度的聚合快相(1-3%),而大多数结合的DNA(1-34%)以非生产性的方式被定位在暂停位点,因此缓慢拉长(0.04-0.06 s-1)。与顺铂修饰的模板退火的DNA底物以类似于未修饰底物(6-9 nM)的亲和力(10-20 nM)与HIV-1 RT结合。顺铂-DNA交联适度减弱了DNA与T7 DNA聚合酶的结合(12-115 nM),但显着减慢了下一个核苷酸(2-7 s-1)的掺入速度,其作用更接近顺铂-DNA加合物。相同的顺铂-DNA加合物的晶体结构[Takahara,P.M.,Frederick,C.A。,和Lippard,S.J。(1996)J.Am.Chem.Soc.Sci。,1992,9,1879]。化学Soc。 118,12309-12321]不仅揭示了弯曲的DNA双链体,而且揭示了顺铂-DNA加合物附近的螺旋桨扭曲碱基对。扭曲的碱基对可能会导致顺铂修饰的DNA在T7 DNA聚合酶的结合裂口处错位,并显着减慢聚合反应之前蛋白质构象变化的速率,从而导致加合物的五个碱基对中中间体的轻微积累。 T7 DNA聚合酶加合物减弱了下一个正确核苷酸与酶DNA的基态结合。在三个强暂停位点以外的其他位点,HIV-1 RT对加合物的加成作用减弱了。核苷酸在三个强暂停位点上与两种酶的结合均明显弱化且选择性较低。

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