首页> 外文OA文献 >Non-nucleoside inhibitors of mitochondrial thymidine kinase (TK-2) differentially inhibit the closely related herpes simplex virus type 1 TK and Drosophila melanogaster multifunctional deoxynucleoside kinase.
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Non-nucleoside inhibitors of mitochondrial thymidine kinase (TK-2) differentially inhibit the closely related herpes simplex virus type 1 TK and Drosophila melanogaster multifunctional deoxynucleoside kinase.

机译:线粒体胸苷激酶(TK-2)的非核苷抑制剂可差异性抑制紧密相关的1型单纯疱疹病毒TK和果蝇多功能脱氧核苷激酶。

摘要

5'-O-Trityl derivatives of thymidine (dThd), (E)-5-(2-bromovinyl)-2'-deoxyuridine (BVDU), and their acyclic analogs 1-[(Z)-4-triphenylmethoxy-2-butenyl]thymine (KIN-12) and (E)-5-(2-bromovinyl)-1-[(Z)-4-triphenylmethoxy-2-butenyl]uracil (KIN-52) have been synthesized and evaluated for their inhibitory activity against the amino acid sequence related mitochondrial dThd kinase (TK-2), herpes simplex virus type 1 (HSV-1) TK, and Drosophila melanogaster multifunctional 2'-deoxynucleoside kinase (Dm-dNK). Several compounds proved markedly inhibitory to these enzymes and represent a new generation of nucleoside kinase inhibitors. KIN-52 was the most potent and selective inhibitor of TK-2 (IC(50), 1.3 microM; K(i), 0.50 microM; K(i)/K(m), 0.37) but was not inhibitory against HSV-1 TK and Dm-dNK at 100 microM. As found for the alternative substrate BVDU, the tritylated compounds competitively inhibited the three enzymes with respect to dThd. However, whereas BVDU behaved as a noncompetitive inhibitor (alternative substrate) of TK-2 and HSV-1 TK with respect to ATP as the varying substrate, the novel tritylated enzyme inhibitors emerged as reversible purely uncompetitive inhibitors of these enzymes. Computer-assisted modeling studies are in agreement with these findings. The tritylated compounds do not act as alternative substrates and they showed a type of kinetics against the nucleoside kinases different from that of BVDU. KIN-12, and particularly KIN-52, are the very first non-nucleoside specific inhibitors of TK-2 reported and may be useful for studying the physiological role of the mitochondrial TK-2 enzyme.
机译:胸苷(dThd),(E)-5-(2-溴乙烯基)-2'-脱氧尿苷(BVDU)的5'-O-Trityl衍生物及其无环类似物1-[(Z)-4-三苯基甲氧基-2-合成了丁烯基]胸腺嘧啶(KIN-12)和(E)-5-(2-溴乙烯基)-1-[(Z)-4-三苯基甲氧基-2-丁烯基]尿嘧啶(KIN-52),并对其抑制作用进行了评估对氨基酸序列相关的线粒体dThd激酶(TK-2),单纯疱疹病毒1型(HSV-1)TK和果蝇果蝇多功能2'-脱氧核苷激酶(Dm-dNK)具有抗性。几种化合物被证明对这些酶具有明显的抑制作用,代表了新一代的核苷激酶抑制剂。 KIN-52是TK-2的最有效和选择性抑制剂(IC(50),1.3 microM; K(i),0.50 microM; K(i)/ K(m),0.37),但不抑制HSV- 1 TK和Dm-dNK,浓度为100 microM。如对于替代底物BVDU所发现的,相对于dThd,三苯甲基化的化合物竞争性地抑制了这三种酶。但是,相对于作为变化底物的ATP,BVDU表现为TK-2和HSV-1 TK的非竞争性抑制剂(替代底物),而新型三苯甲基化酶抑制剂却以这些酶的可逆性纯粹非竞争性抑制剂的形式出现。计算机辅助建模研究与这些发现相符。三苯甲基化的化合物不能用作替代底物,它们显示出与BVDU不同的针对核苷激酶的动力学类型。 KIN-12,尤其是KIN-52,是最早报道的TK-2的非核苷特异性抑制剂,可用于研究线粒体TK-2酶的生理作用。

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