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过氧化物酶体和糖体的生物发生:锥虫糖体组装是一个有前景的新药物靶点。

Biogenesis of peroxisomes and glycosomes: trypanosomatid glycosome assembly is a promising new drug target.

作者信息

Moyersoen Juliette, Choe Jungwoo, Fan Erkang, Hol Wim G J, Michels Paul A M

机构信息

Research Unit for Tropical Diseases, Christian de Duve Institute of Cellular Pathology and Laboratory of Biochemistry, Université Catholique de Louvain, ICP-TROP 74.39, Avenue Hippocrate 74, B-1200 Brussels, Belgium.

出版信息

FEMS Microbiol Rev. 2004 Nov;28(5):603-43. doi: 10.1016/j.femsre.2004.06.004.

Abstract

In trypanosomatids (Trypanosoma and Leishmania), protozoa responsible for serious diseases of mankind in tropical and subtropical countries, core carbohydrate metabolism including glycolysis is compartmentalized in peculiar peroxisomes called glycosomes. Proper biogenesis of these organelles and the correct sequestering of glycolytic enzymes are essential to these parasites. Biogenesis of glycosomes in trypanosomatids and that of peroxisomes in other eukaryotes, including the human host, occur via homologous processes involving proteins called peroxins, which exert their function through multiple, transient interactions with each other. Decreased expression of peroxins leads to death of trypanosomes. Peroxins show only a low level of sequence conservation. Therefore, it seems feasible to design compounds that will prevent interactions of proteins involved in biogenesis of trypanosomatid glycosomes without interfering with peroxisome formation in the human host cells. Such compounds would be suitable as lead drugs against trypanosomatid-borne diseases.

摘要

在锥虫(锥虫属和利什曼原虫属)中,这些原生动物在热带和亚热带国家引发人类的严重疾病,包括糖酵解在内的核心碳水化合物代谢被分隔在称为糖体的特殊过氧化物酶体中。这些细胞器的正常生物发生以及糖酵解酶的正确隔离对这些寄生虫至关重要。锥虫中糖体的生物发生以及包括人类宿主在内的其他真核生物中过氧化物酶体的生物发生,是通过涉及称为过氧化物酶的蛋白质的同源过程发生的,这些蛋白质通过彼此之间多次短暂相互作用发挥功能。过氧化物酶表达降低会导致锥虫死亡。过氧化物酶仅表现出低水平的序列保守性。因此,设计能够阻止参与锥虫糖体生物发生的蛋白质相互作用而不干扰人类宿主细胞中过氧化物酶体形成的化合物似乎是可行的。此类化合物将适合作为抗锥虫传播疾病的先导药物。

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