Koseki Yuji, Kanetaka Hironori, Tsunosaki Joji, Munier-Lehmann Héléne, Aoki Shunsuke
Department of Bioscience and Bioinformatics, Graduate School of Computer Science and Systems Engineering, Kyushu Institute of Technology, 680-4 Kawazu, Iizuka-shi, Fukuoka 820-8502, Japan.
Institut Pasteur, Unite de Chimie et Biocatalyse, Departement de Biologie Structurale et Chimie, 28 rue du Dr Roux, F-75015; CNRS, UMR3523, F-75015 Paris, France.
Int J Mycobacteriol. 2017 Jan-Mar;6(1):61-69. doi: 10.4103/2212-5531.201893.
OBJECTIVE/BACKGROUND: Mycobacterium tuberculosis thymidine monophosphate kinase (mtTMPK) is a potential enzymatic target for the treatment of tuberculosis (TB).
In this study, we performed pharmacophore-based in silico screening, targeting mtTMPK with a compound library of 461,383 chemicals. We evaluated the candidate compounds for inhibitory effects on the growth of the model mycobacteria, Mycobacterium smegmatis.
The compound KTP3 completely inhibited the growth of M. smegmatis at 100 μM. A similarity search and rescreening with the structure of compound KTP3 using a web-based database identified two similar compounds (KTPS1 and KTPS2) with improved potency. The KTP3 analogs, KTPS1 and KTPS2, exhibited strong growth inhibitory effects with half-maximal inhibitory concentration values of 8.04 μM and 17.1 μM, respectively, against M. smegmatis. Moreover, the most potent chemical compound, KTPS1, did not exhibit toxic effects on the model enterobacteria and several mammalian cells. Two active chemicals, KTPS1 and KTPS2, inhibited mtTMPK activity by 18% and 36%, respectively, suggesting that these compounds have off-target activities against Mycobacterium.
Structural and biological information on these chemicals is likely to be useful for the development of novel antibiotics for the treatment of TB.
目的/背景:结核分枝杆菌胸苷单磷酸激酶(mtTMPK)是治疗结核病(TB)的一个潜在酶靶点。
在本研究中,我们基于药效团进行了计算机模拟筛选,用一个包含461,383种化学物质的化合物库靶向mtTMPK。我们评估了候选化合物对模式分枝杆菌耻垢分枝杆菌生长的抑制作用。
化合物KTP3在100μM时完全抑制了耻垢分枝杆菌的生长。使用基于网络的数据库对化合物KTP3的结构进行相似性搜索和重新筛选,确定了两种活性增强的类似化合物(KTPS1和KTPS2)。KTP3类似物KTPS1和KTPS2对耻垢分枝杆菌表现出强烈的生长抑制作用,半数最大抑制浓度值分别为8.04μM和17.1μM。此外,最有效的化合物KTPS1对模式肠道杆菌和几种哺乳动物细胞未表现出毒性作用。两种活性化合物KTPS1和KTPS2分别抑制mtTMPK活性18%和36%,表明这些化合物对分枝杆菌具有脱靶活性。
这些化学物质的结构和生物学信息可能有助于开发治疗结核病的新型抗生素。