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通过使用克氏锥虫基因组信息进行计算机代谢途径分析,发现潜在药物靶点的新方法。

A new approach for potential drug target discovery through in silico metabolic pathway analysis using Trypanosoma cruzi genome information.

机构信息

Laboratório de Genômica Funcional e Bioinformática, Instituto Oswaldo Cruz-Fiocruz, Rio de Janeiro, Brasil.

出版信息

Mem Inst Oswaldo Cruz. 2009 Dec;104(8):1100-10. doi: 10.1590/s0074-02762009000800006.

Abstract

The current drug options for the treatment of chronic Chagas disease have not been sufficient and high hopes have been placed on the use of genomic data from the human parasite Trypanosoma cruzi to identify new drug targets and develop appropriate treatments for both acute and chronic Chagas disease. However, the lack of a complete assembly of the genomic sequence and the presence of many predicted proteins with unknown or unsure functions has hampered our complete view of the parasite's metabolic pathways. Moreover, pinpointing new drug targets has proven to be more complex than anticipated and has revealed large holes in our understanding of metabolic pathways and their integrated regulation, not only for this parasite, but for many other similar pathogens. Using an in silicocomparative study on pathway annotation and searching for analogous and specific enzymes, we have been able to predict a considerable number of additional enzymatic functions in T. cruzi. Here we focus on the energetic pathways, such as glycolysis, the pentose phosphate shunt, the Krebs cycle and lipid metabolism. We point out many enzymes that are analogous to those of the human host, which could be potential new therapeutic targets.

摘要

目前治疗慢性恰加斯病的药物选择并不充分,人们寄希望于利用人体寄生虫克氏锥虫的基因组数据来识别新的药物靶点,并为急性和慢性恰加斯病开发合适的治疗方法。然而,由于缺乏完整的基因组序列组装,以及存在许多具有未知或不确定功能的预测蛋白,我们对寄生虫的代谢途径仍无法全面了解。此外,确定新的药物靶点比预期的更为复杂,这表明我们对代谢途径及其综合调控的理解存在很大的空白,不仅针对这种寄生虫,还针对许多其他类似的病原体。通过对途径注释进行计算机模拟比较研究,并搜索类似和特定的酶,我们已经能够预测克氏锥虫中相当数量的额外酶功能。在这里,我们重点关注能量代谢途径,如糖酵解、磷酸戊糖途径、三羧酸循环和脂类代谢。我们指出了许多与人类宿主类似的酶,这些酶可能是潜在的新治疗靶点。

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