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Specific and Nonhomologous Isofunctional Enzymes of the Genetic Information Processing Pathways as Potential Therapeutical Targets for Tritryps

机译:遗传信息处理途径中的特异和非同源同功酶作为潜在的Tritryps治疗靶标。

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摘要

Leishmania major, Trypanosoma brucei, and Trypanosoma cruzi (Tritryps) are unicellular protozoa that cause leishmaniasis, sleeping sickness and Chagas' disease, respectively. Most drugs against them were discovered through the screening of large numbers of compounds against whole parasites. Nonhomologous isofunctional enzymes (NISEs) may present good opportunities for the identification of new putative drug targets because, though sharing the same enzymatic activity, they possess different three-dimensional structures thus allowing the development of molecules against one or other isoform. From public data of the Tritryps' genomes, we reconstructed the Genetic Information Processing Pathways (GIPPs). We then used AnEnPi to look for the presence of these enzymes between Homo sapiens and Tritryps, as well as specific enzymes of the parasites. We identified three candidates (ECs 3.1.11.2 and 6.1.1.-) in these pathways that may be further studied as new therapeutic targets for drug development against these parasites.
机译:大利什曼原虫,布鲁氏锥虫和克鲁氏锥虫(Tritryps)是分别引起利什曼病,昏睡病和恰加斯病的单细胞原生动物。大多数针对他们的药物是通过针对整个寄生虫筛选大量化合物而发现的。非同源同功能酶(NISE)可能为鉴定新推定的药物靶标提供了很好的机会,因为尽管它们具有相同的酶活性,但它们具有不同的三维结构,因此允许针对一种或另一种同工型的分子发展。从Tritryps基因组的公开数据中,我们重建了遗传信息处理途径(GIPP)。然后,我们使用AnEnPi查找智人和Tritryps之间这些酶的存在,以及寄生虫的特定酶。我们在这些途径中确定了三个候选物(EC 3.1.11.2和6.1.1.-),可以进一步研究它们作为针对这些寄生虫的药物开发的新治疗靶标。

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