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克氏锥虫前鞭毛体的分化:营养应激触发循环后期发育及与底物的黏附。

Differentiation of Trypanosoma cruzi epimastigotes: metacyclogenesis and adhesion to substrate are triggered by nutritional stress.

作者信息

Figueiredo R C, Rosa D S, Soares M J

机构信息

Departamento de Patologia e Biologia Celular, Centro de Pesquisa Aggeu Magalhães/Fundação Instituto Oswaldo Cruz, Recife, PE, Brazil.

出版信息

J Parasitol. 2000 Dec;86(6):1213-8. doi: 10.1645/0022-3395(2000)086[1213:DOTCEM]2.0.CO;2.

Abstract

Differentiation of Trypanosoma cruzi epimastigotes to metacyclic trypomastigotes occurs in the insect rectum, after adhesion of the epimastigotes to the intestinal wall. We investigated the effect of the nutritional stress on the metacyclogenesis process in vitro by incubating epimastigotes in the chemically defined TAU3AAG medium supplemented with different nutrients. Addition of fetal bovine serum induced epimastigote growth but inhibited metacyclogenesis. In this medium, few parasites attached to the substrate. Ultrastructural analysis demonstrated reservosomes at the posterior end of the epimastigotes. Incubation of the cells in TAU3AAG medium containing gold-labeled transferrin resulted in high endocytosis of the marker by both adhered and free-swimming epimastigotes. No intracellular gold particles could be detected in trypomastigotes. Addition of transferrin gold complexes to adhered epimastigotes cultivated for 4 days in TAU3AAG medium resulted in decrease of both metacyclogenesis and adhesion to the substrate, as compared with parasites maintained in transferrin-free medium. Adhesion to the substrate is triggered by nutritional stress, and proteins accumulated in reservosomes are used as energy source during the differentiation. A close relationship exists among nutritional stress, endocytosis of nutrients, adhesion to the substrate, and cell differentiation in T. cruzi epimastigotes.

摘要

克氏锥虫前鞭毛体向循环后期锥鞭毛体的分化发生在昆虫直肠内,即前鞭毛体粘附于肠壁之后。我们通过在添加不同营养成分的化学限定TAU3AAG培养基中培养前鞭毛体,研究了营养应激对体外循环后期发育过程的影响。添加胎牛血清可促进前鞭毛体生长,但会抑制循环后期发育。在这种培养基中,很少有寄生虫附着于底物。超微结构分析显示前鞭毛体后端存在储存小体。在含有金标记转铁蛋白的TAU3AAG培养基中培养细胞,结果显示附着和自由游动的前鞭毛体均对该标记物有较高的内吞作用。在锥鞭毛体中未检测到细胞内金颗粒。与在无转铁蛋白培养基中培养的寄生虫相比,向在TAU3AAG培养基中培养4天的附着前鞭毛体添加转铁蛋白金复合物会导致循环后期发育及对底物的粘附减少。对底物的粘附由营养应激触发,储存小体中积累的蛋白质在分化过程中用作能量来源。在克氏锥虫前鞭毛体中,营养应激、营养物质的内吞作用、对底物的粘附和细胞分化之间存在密切关系。

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