Brown N C, Gambino J, Wright G E
J Med Chem. 1977 Sep;20(9):1186-9. doi: 10.1021/jm00219a015.
6-(Benzylamino)uracils and substituted 6-anilinouracils have been found to be potent inhibitors of Bacillus subtilis DNA polymerase III by a mechanism identical with that of 6-(phenylhydrazino)uracils. Higher phenylalkylamino homologues are progressively weaker inhibitors of the enzyme. Examination of the effects of substituents on the activity of 6-(benzylamino)uracils against wild-type and mutant enzymes and preliminary results for 6-anilinouracils have permitted further dissection of the mechanism of inhibition. The experimental results indicate that (1) the polymerase inhibitor binding site is compact, accommodating only small alterations in the distance between the uracil and phenyl rings, (2) the phenyl ring, which provides the major contribution to inhibitor-enzyme binding, adopts a specific active conformation, and (3) an enzyme site which interacts with substituents in the phenyl ring forms a part of the active site of DNA polymerase III.
已发现6-(苄氨基)尿嘧啶和取代的6-苯胺基尿嘧啶是枯草芽孢杆菌DNA聚合酶III的有效抑制剂,其作用机制与6-(苯肼基)尿嘧啶相同。较高的苯烷基氨基同系物对该酶的抑制作用逐渐减弱。研究取代基对6-(苄氨基)尿嘧啶对野生型和突变型酶活性的影响以及6-苯胺基尿嘧啶的初步结果,有助于进一步剖析抑制机制。实验结果表明:(1)聚合酶抑制剂结合位点紧密,仅能容纳尿嘧啶环与苯环之间距离的微小变化;(2)对抑制剂与酶结合起主要作用的苯环采取特定的活性构象;(3)与苯环上取代基相互作用的酶位点构成DNA聚合酶III活性位点的一部分。