B Kierdaszuk, K Krawiec, Z Kazimierczuk, U Jacobsson, N G Johansson, B Munch-Petersen, S Eriksson, D Shugar
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An excellent discriminator between TK1 and TK2 was 3'-hexanoylamino-2',3'-dideoxythymidine, with a Ki of approximately 600 microM for TK1 and approximately 0.1 microM for TK2. 3'-OMe-dC was a superior inhibitor of dCK to its 5'-O-methyl congener, consistent with possible participation of the oxygen of the (3')-OH or (3')-OMe as proton acceptor in hydrogen bonding with the enzyme. Surprisingly alpha-dT was a good substrate of both TK1 and TK2, with Ki values of 120 and 30 microM for TK1 and TK2, respectively; and a 3'-branched alpha-L-deoxycytidine analogue proved to be as good a substrate as its alpha-D-counterpart. Several 5'-substituted analogues of dC were good non-substrate inhibitors of dCK and, to a lesser extent, of TK2. Finally, some ribonucleosides are substrates of the foregoing enzymes; in particular C is a good substrate of dCK, and 2'-OMe-C is an even better substrate than dC.</p>","PeriodicalId":19222,"journal":{"name":"Nucleosides & nucleotides","volume":"18 8","pages":"1883-903"},"PeriodicalIF":0.0000,"publicationDate":"1999-08-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1080/07328319908044850","citationCount":"22","resultStr":"{\"title\":\"Substrate/inhibitor properties of human deoxycytidine kinase (dCK) and thymidine kinases (TK1 and TK2) towards the sugar moiety of nucleosides, including O'-alkyl analogues.\",\"authors\":\"B Kierdaszuk, K Krawiec, Z Kazimierczuk, U Jacobsson, N G Johansson, B Munch-Petersen, S Eriksson, D Shugar\",\"doi\":\"10.1080/07328319908044850\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Nucleoside analogues with modified sugar moieties have been examined for their substrate/inhibitor specificities towards highly purified deoxycytidine kinase (dCK) and thymidine kinases (tetrameric high-affinity form of TK1, and TK2) from human leukemic spleen. 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引用次数: 22
摘要
糖基修饰的核苷类似物对人白血病脾中高度纯化的脱氧胞苷激酶(dCK)和胸苷激酶(TK1和TK2的四聚体高亲和力形式)的底物/抑制剂特异性进行了检测。特别地,这些类似物包括dC、dU和dA的单o '-和双o '-甲基衍生物,并描述了它们的合成方法。一般来说,带有修饰糖环的嘌呤核苷是比相应的胞嘧啶类似物更弱的底物。糖修饰的dU类似物也是TK1和TK2相对较差的底物,但却是相当好的抑制剂,相对于TK2的Ki值通常低于TK1。3′-己基氨基-2′,3′-二脱氧胸腺嘧啶是TK1和TK2的优秀鉴别剂,其Ki值约为600微米,TK2约为0.1微米。3'-OMe- dc是dCK对其5'- o -甲基同源物的优良抑制剂,这与(3')-OH或(3')-OMe的氧作为质子受体参与酶的氢键的可能性一致。令人惊讶的是,α - dt是TK1和TK2的良好底物,TK1和TK2的Ki值分别为120和30微米;3'支链的l -脱氧胞苷类似物被证明是和d -类似物一样好的底物。dC的几种5'取代类似物是dCK的良好非底物抑制剂,在较小程度上是TK2的抑制剂。最后,一些核糖核苷是上述酶的底物;特别是C是dCK的良好底物,而2′-OMe-C是比dC更好的底物。
Substrate/inhibitor properties of human deoxycytidine kinase (dCK) and thymidine kinases (TK1 and TK2) towards the sugar moiety of nucleosides, including O'-alkyl analogues.
Nucleoside analogues with modified sugar moieties have been examined for their substrate/inhibitor specificities towards highly purified deoxycytidine kinase (dCK) and thymidine kinases (tetrameric high-affinity form of TK1, and TK2) from human leukemic spleen. In particular, the analogues included the mono- and di-O'-methyl derivatives of dC, dU and dA, syntheses of which are described. In general, purine nucleosides with modified sugar rings were feebler substrates than the corresponding cytosine analogues. Sugar-modified analogues of dU were also relatively poor substrates of TK1 and TK2, but were reasonably good inhibitors, with generally lower Ki values vs TK2 than TK1. An excellent discriminator between TK1 and TK2 was 3'-hexanoylamino-2',3'-dideoxythymidine, with a Ki of approximately 600 microM for TK1 and approximately 0.1 microM for TK2. 3'-OMe-dC was a superior inhibitor of dCK to its 5'-O-methyl congener, consistent with possible participation of the oxygen of the (3')-OH or (3')-OMe as proton acceptor in hydrogen bonding with the enzyme. Surprisingly alpha-dT was a good substrate of both TK1 and TK2, with Ki values of 120 and 30 microM for TK1 and TK2, respectively; and a 3'-branched alpha-L-deoxycytidine analogue proved to be as good a substrate as its alpha-D-counterpart. Several 5'-substituted analogues of dC were good non-substrate inhibitors of dCK and, to a lesser extent, of TK2. Finally, some ribonucleosides are substrates of the foregoing enzymes; in particular C is a good substrate of dCK, and 2'-OMe-C is an even better substrate than dC.