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首页> 外文期刊>Journal of Medicinal Chemistry >The Most Potent Organophosphorus Inhibitors of Leucine Aminopeptidase. Structure-Based Design, Chemistry, and Activity
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The Most Potent Organophosphorus Inhibitors of Leucine Aminopeptidase. Structure-Based Design, Chemistry, and Activity

机译:亮氨酸氨基肽酶的最有效的有机磷抑制剂。基于结构的设计,化学和活动

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A new class of very potent inhibitors of cytosol leucine aminopeptidase (LAP), a member of the metalloprotease family, is described. The X-ray structure of bovine lens leucine aminopeptidase complexed with the phosphonic acid analogue of leucine (LeuP) was used for structure-based design of novel LAP inhibitors and for the analysis of their interactions with the enzyme binding site. The inhibitors were designed by modification of phosphonic group in the LeuP structure toward finding the substituents bound at the S' side of the enzyme. This resulted in two classes of compounds, the phosphonamidate and phosphinate dipeptide analogues, which were synthesized and evaluated as inhibitors of the enzyme. The in vitro kinetic studies for the phosphinate dipeptide analogues revealed that these compounds belong to the group of the most effective LAP inhibitors found so far. Their further modification at the P1 position resulted in more active inhibitors, hPheP[CH_2]Phe and hPheP[CH_2]Tyr (K_i values 66 nM and 67 nM, respectively, for the mixture of four diastereomers). The binding affinities of these inhibitors toward the enzyme are the highest, if considering all compounds containing a phosphorus atom that mimick the transition state of the reaction catalyzed by LAP. To evaluate selectivity of the designed LAP inhibitors, additional tests toward aminopeptidase N(APN) were performed. The key feature, which determines their selectivity, is structure at the P1' position. Aromatic and aliphatic substituents placed at this position strongly interact with the LAP S1' binding pocket, while a significant increase in binding affinity toward APN was observed for compounds containing aromatic versus leucine side chains at the P1' position. The most selective inhibitor, hPheP[CH_2]Leu, binds to LAP with 15 times higher affinity than to APN. One of the studied compounds, hPheP[CH_2]Tyr, appeared to be very potent inhibitor of APN (K_i = 36 nM for the mixture of four diastereomers). The most promising LAP inhibitors designed by computer-aided approach, the phosphonamidate dipeptide analogues, were unstable at pH below 12, because of the P-N bond decomposition, which excluded the possibility of determination of their binding affinities toward LAP.
机译:描述了一种新型的非常有效的细胞溶质亮氨酸氨基肽酶(LAP)抑制剂,金属蛋白酶家族的成员。牛晶亮氨酸氨基肽酶与亮氨酸的膦酸类似物(LeuP)配合的X射线结构用于新型LAP抑制剂的基于结构的设计,以及用于分析其与酶结合位点的相互作用。通过修饰LeuP结构中的膦酸基团以寻找结合在酶S'侧的取代基来设计抑制剂。这产生了两类化合物,膦酰胺和次膦酸酯二肽类似物,它们被合成并评估为酶的抑制剂。次膦酸酯二肽类似物的体外动力学研究表明,这些化合物属于迄今为止发现的最有效的LAP抑制剂。它们在P1位置的进一步修饰产生了更具活性的抑制剂hPheP [CH_2] Phe和hPheP [CH_2] Tyr(四种非对映异构体的混合物K_i分别为66 nM和67 nM)。如果考虑所有含磷原子的化合物,这些化合物模拟LAP催化的反应的过渡态,则这些抑制剂对酶的结合亲和力最高。为了评估设计的LAP抑制剂的选择性,针对氨基肽酶N(APN)进行了其他测试。决定其选择性的关键特征是P1'位置的结构。置于此位置的芳族和脂族取代基与LAP S1'的结合口袋强烈相互作用,而在P1'位置含有芳族对亮氨酸侧链的化合物中,对APN的结合亲和力显着提高。选择性最高的抑制剂hPheP [CH_2] Leu与LAP的亲和力比对APN的亲和力高15倍。所研究的化合物之一hPheP [CH_2] Tyr似乎是APN的强效抑制剂(四种非对映异构体的混合物,K_i = 36 nM)。通过计算机辅助方法设计的最有前途的LAP抑制剂,膦酰胺二肽类似物,由于P-N键分解,在pH低于12时不稳定,这排除了测定其对LAP结合亲和力的可能性。

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