Kappen L S, Goldberg I H
Biochemistry. 1977 Feb 8;16(3):479-85. doi: 10.1021/bi00622a022.
Neocarzinostatin (NCS), an antitumor protein antibiotic that causes strand scissions of DNA both in vitro and in vivo, is shown to lower the template activity of DNA for DNA polymerase Iin vitro. There is a correlation between the extent of strand scission and the degree of inhibition, maximal inhibition of the polymerase reaction being obtained under conditions promoting maximal strand scission. These effects can be related to the concentrations of NCS and of 2-mercaptoethanol and are maximized by pretreatment of the DNA with drug. Results from polymerase assays in which the amount of drug-treated DNA template was varied at a constant level of the enzyme suggest that the sites associated with NCS-induced breaks are nonfunctional in DNA synthesis but bind DNA polymerase I. The binding of the enzyme to the inactive sites is further confirmed using [203 Hg] polymerase. It is shown that the lowering of the template activity of DNA by NCS under conditions of strand scission is due to the generation of a large number of inactive sites that block, competitively, the binding of DNA polymerase to the active sites on the template. Furthermore, the inhibition of DNA synthesis, which depends on the extent of strand breakage and on the relative amounts of template and enzyme, can be reversed by increasing the levels of template or polymerase. The finding that DNA synthesis directed by poly [d(A-T)] is much more sensitive to NCS than that primed by poly [d(G-C)] suggests that the drug preferentially interacts at regions containing adenine and/or thymine residues.
新制癌菌素(NCS)是一种抗肿瘤蛋白抗生素,在体外和体内均能引起DNA链断裂,已证明它在体外可降低DNA对DNA聚合酶I的模板活性。链断裂程度与抑制程度之间存在相关性,在促进最大程度链断裂的条件下可获得聚合酶反应的最大抑制。这些效应与NCS和2-巯基乙醇的浓度有关,并且通过用药物预处理DNA可使其最大化。在酶浓度恒定的情况下改变药物处理的DNA模板量的聚合酶测定结果表明,与NCS诱导的断裂相关的位点在DNA合成中无功能,但能结合DNA聚合酶I。使用[203Hg]聚合酶进一步证实了该酶与无活性位点的结合。结果表明,在链断裂条件下NCS降低DNA模板活性是由于产生了大量无活性位点,这些位点竞争性地阻止了DNA聚合酶与模板上活性位点的结合。此外,取决于链断裂程度以及模板和酶的相对量的DNA合成抑制作用,可以通过增加模板或聚合酶的水平来逆转。由聚[d(A-T)]指导的DNA合成比由聚[d(G-C)]引发的DNA合成对NCS更敏感,这一发现表明该药物优先在含有腺嘌呤和/或胸腺嘧啶残基的区域相互作用。