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首页> 外文期刊>Journal of Medicinal Chemistry >Structure-activity relationships of 7-deaza-6-benzylthioinosine analogues as ligands of Toxoplasma gondii adenosine kinase
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Structure-activity relationships of 7-deaza-6-benzylthioinosine analogues as ligands of Toxoplasma gondii adenosine kinase

机译:7-脱氮-6-苄基硫代肌氨酸类似物作为弓形虫腺苷激酶配体的构效关系

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摘要

Several 7-deaza-6-benzylthioinosine analogues with varied substituents on aromatic ring were synthesized and evaluated against Toxoplasma gondii adenosine kinase (EC.2.7.1.20). Structure-activity relationships indicated that the nitrogen atom at the 7-position does not appear to be a critical structural requirement. Molecular modeling reveals that the 7-deazapurine motif provided flexibility to the 6-benzylthio group as a result of the absence of H-bonding between N7 and Thr140. This flexibility allowed better fitting of the 6-benzylthio group into the hydrophobic pocket of the enzyme at the 6-position. In general, single substitutions at the para or meta position enhanced binding. On the other hand., single substitutions at the ortho position led to the loss of binding affinity. The most potent compounds, 7-deaza-p-cyano-6-benzylthioinosine (IC50 = 5.3 mu M) and 7-deaza-p-methoxy-6-benzylthioinosine (IC50 = 4.6 mu M), were evaluated in cell culture to delineate their selective toxicity.
机译:合成了几种在芳环上具有不同取代基的7-脱氮-6-苄基硫代肌氨酸类似物,并针对弓形虫腺苷激酶(EC.2.7.1.20)进行了评估。结构-活性关系表明,在7位的氮原子似乎不是关键的结构要求。分子建模表明,由于N7和Thr140之间不存在H键,因此7-脱氮嘌呤基序为6-苄硫基提供了灵活性。这种柔韧性使得6-苄硫基更好地适合于6-位酶的疏水口袋。通常,对位或间位的单取代增强结合。另一方面,邻位的单取代导致结合亲和力的损失。在细胞培养中评估了最有效的化合物7-脱氮基-对氰基-6-苄基硫代肌苷(IC50 = 5.3μM)和7-脱氮基-对甲氧基-6-苄基硫代肌苷(IC50 = 4.6μM)来描述它们的选择性毒性。

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