首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Potent and selective inhibitors for M32 metallocarboxypeptidases identified from high-throughput screening of anti-kinetoplastid chemical boxes
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Potent and selective inhibitors for M32 metallocarboxypeptidases identified from high-throughput screening of anti-kinetoplastid chemical boxes

机译:从高通量筛选抗动素体化学盒中鉴定出M32金属羧肽酶的有效和选择性抑制剂

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摘要

Enzymes of the M32 family are Zn-dependent metallocarboxypeptidases (MCPs) widely distributed among prokaryotic organisms and just a few eukaryotes including Trypanosoma brucei and Trypanosoma cruzi, the causative agents of sleeping sickness and Chagas disease, respectively. These enzymes are absent in humans and several functions have been proposed for trypanosomatid M32 MCPs. However, no synthetic inhibitors have been reported so far for these enzymes. Here, we present the identification of a set of inhibitors for TcMCP-1 and TbMCP-1 (two trypanosomatid M32 enzymes sharing 71% protein sequence identity) from the GlaxoSmithKline HAT and CHAGAS chemical boxes; two collections grouping 404 compounds with high antiparasitic potency, drug-likeness, structural diversity and scientific novelty. For this purpose, we adapted continuous fluorescent enzymatic assays to a medium-throughput format and carried out the screening of both collections, followed by the construction of dose-response curves for the most promising hits. As a result, 30 micromolar-range inhibitors were discovered for one or both enzymes. The best hit, TCMDC-143620, showed sub-micromolar affinity for TcMCP-1, inhibited TbMCP-1 in the low micromolar range and was inactive against angiotensin I-converting enzyme (ACE), a potential mammalian off-target structurally related to M32 MCPs. This is the first inhibitor reported for this family of MCPs and considering its potency and specificity, TCMDC-143620 seems to be a promissory starting point to develop more specific and potent chemical tools targeting M32 MCPs from trypanosomatid parasites.
机译:M32家族的酶是锌依赖性金属羧肽酶(MCPs),广泛分布于原核生物和仅包括真核锥虫和布鲁氏锥虫(Trypanosoma cruzi)的几种真核生物中,分别是昏睡病和南美锥虫病的病原体。这些酶在人类中是不存在的,对于锥虫M32 MCP,已经提出了几种功能。但是,到目前为止,还没有关于这些酶的合成抑制剂的报道。在这里,我们从葛兰素史克HAT和CHAGAS化学盒中鉴定出一套TcMCP-1和TbMCP-1抑制剂(两种锥虫M32酶,共享71%的蛋白质序列同一性)。这两个集合将404种具有高抗寄生虫效力,药物样似性,结构多样性和科学新颖性的化合物分组。为此,我们将连续荧光酶促测定法调整为中等通量形式,并进行了两个集合的筛选,然后构建了最有希望的命中的剂量反应曲线。结果,发现一种或两种酶的30微摩尔范围抑制剂。命中率最高的TCMDC-143620对TcMCP-1具有亚微摩尔亲和力,在低微摩尔范围内抑制TbMCP-1,并且对血管紧张素I转化酶(ACE)无效,而血管紧张素I转化酶(ACE)在结构上与M32相关,可能是脱靶的MCP。这是针对该MCP家族报道的第一种抑制剂,考虑到其效力和特异性,TCMDC-143620似乎是从锥虫病寄生虫中开发针对M32 MCP的更特异性和有效化学工具的必然起点。

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