Vanheusden Veerle, Munier-Lehmann Hélène, Froeyen Matheus, Dugué Laurence, Heyerick Arne, De Keukeleire Denis, Pochet Sylvie, Busson Roger, Herdewijn Piet, Van Calenbergh Serge
Laboratory for Medicinal Chemistry (FFW), Ghent University, Harelbekestraat 72, 9000 Gent, Belgium.
J Med Chem. 2003 Aug 28;46(18):3811-21. doi: 10.1021/jm021108n.
Thymidine monophosphate kinase (TMPK) of Mycobacterium tuberculosis (TMPKmt) represents an attractive target for blocking the bacterial DNA synthesis. In an attempt to find high-affinity inhibitors of TMPKmt, a cavity in the enzyme at the 3'-position was explored via the introduction of various substituents at the 3'-position of the thymidine monophosphate (dTMP) scaffold. Various 3'-C-branched chain substituted nucleotides in the 2'-deoxyribo (3-6) and ribo series (7, 8) were synthesized from one key intermediate (23). 2'-Deoxy analogues proved to be potent inhibitors of TMPKmt: 3'-CH(2)NH(2) (4), 3'-CH(2)N(3) (3), and 3'-CH(2)F (5) nucleotides exhibit the highest affinities within this series, with K(i) values of 10.5, 12, and 15 microM, respectively. These results show that TMPKmt tolerates the introduction of sterically demanding substituents at the 3'-position. Ribo analogues experience a significant affinity decrease, which is probably due to steric hindrance of Tyr103 in close vicinity of the 2'-position. Although the 5'-O-phosphorylated compounds have somewhat higher affinities for the enzyme, the parent nucleosides generally exhibit affinities for TMPKmt in the same order of magnitude and display a superior selectivity profile versus human TMPK. This series of inhibitors holds promise for the development of a new class of antituberculosis agents.
结核分枝杆菌的胸苷单磷酸激酶(TMPKmt)是阻断细菌DNA合成的一个有吸引力的靶点。为了寻找TMPKmt的高亲和力抑制剂,通过在胸苷单磷酸(dTMP)支架的3'-位引入各种取代基,对该酶3'-位的一个空腔进行了探索。从一个关键中间体(23)合成了2'-脱氧核糖(3-6)和核糖系列(7,8)中的各种3'-C-支链取代核苷酸。2'-脱氧类似物被证明是TMPKmt的有效抑制剂:3'-CH(2)NH(2)(4)、3'-CH(2)N(3)(3)和3'-CH(2)F(5)核苷酸在该系列中表现出最高的亲和力,K(i)值分别为10.5、12和15 microM。这些结果表明,TMPKmt能够耐受在3'-位引入空间位阻较大的取代基。核糖类似物的亲和力显著下降,这可能是由于在2'-位附近的Tyr103存在空间位阻。尽管5'-O-磷酸化化合物对该酶的亲和力略高,但母体核苷对TMPKmt的亲和力通常处于相同的数量级,并且相对于人TMPK表现出更高的选择性。这一系列抑制剂有望开发出一类新型抗结核药物。