Buki K G, Bauer P I, Mendeleyev J, Hakam A, Kun E
Laboratory for Environmental Toxicology and Chemistry, Romberg Tiburon Centers, San Francisco State University, Tiburon, CA 94920.
FEBS Lett. 1991 Sep 23;290(1-2):181-5. doi: 10.1016/0014-5793(91)81255-7.
6-Nitroso-1,2-benzopyrone, an oxidation product of 6-amino-1,2-benzopyrone, binds to the DNA-recognizing domain of the ADP-ribose transferase protein and preferentially destabilizes Zn2+ from one of the two zinc finger polypeptide complexes present in the intact enzyme, as determined by the loss of 50% of 65Zn2+ from the 65Zn(2+)-isolated protein molecule, coincidental with the loss of 99% of enzymatic activity. The 50% zinc-deficient enzyme still binds to a DNA template, consisting of a 17-mer DNA primer annealed to M13 positive strand, resulting in the blocking of DNA synthesis by the Klenow fragment of Pol I. Auto-poly-ADP-ribosylated ADP-ribose transferase, which is the probable physiological state of this protein in intact cells, does not bind to primer-template DNA and does not block DNA synthesis by the Klenow fragment. On the basis of this in vitro model it is proposed that molecules which inhibit or inactivate ADP-ribose transferase in intact cells can induce significant alteration in DNA structure and replication.
6-亚硝基-1,2-苯并吡喃酮是6-氨基-1,2-苯并吡喃酮的氧化产物,它与ADP-核糖转移酶蛋白的DNA识别结构域结合,并优先使完整酶中存在的两个锌指多肽复合物之一的Zn2+不稳定,这是通过65Zn(2+)-分离的蛋白质分子中50%的65Zn2+损失来确定的,同时99%的酶活性丧失。50%锌缺乏的酶仍然与DNA模板结合,该模板由与M13正链退火的17聚体DNA引物组成,导致DNA聚合酶I的Klenow片段阻断DNA合成。自身多聚ADP-核糖基化的ADP-核糖转移酶,这可能是该蛋白在完整细胞中的生理状态,不与引物-模板DNA结合,也不被Klenow片段阻断DNA合成。基于这个体外模型,有人提出,在完整细胞中抑制或使ADP-核糖转移酶失活的分子可以诱导DNA结构和复制的显著改变。