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首页> 外文期刊>Eukaryotic cell >Evidence that hsp90 Is Involved in the Altered Interactions of Acanthamoeba castellanii Variants with Bacteria
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Evidence that hsp90 Is Involved in the Altered Interactions of Acanthamoeba castellanii Variants with Bacteria

机译:hsp90参与的棘轮棘阿米巴细菌变种与细菌相互作用的证据

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There are many similarities between the interactions of environmental protozoa with pathogenic bacterial species and those observed in mammalian macrophages. Since single-celled protozoa predate mammalian hosts, it is likely that interactions in environmental biofilms have selected for many of the bacterial virulence mechanisms responsible for human disease. In order to better understand bacterial-phagocyte interactions, we developed a selection for Acanthamoeba castellanii variants that are more resistant to killing by bacterial pathogens. We identified four amoebal clones that display decreased phagocytosis of bacteria but no difference in uptake of latex beads compared to wild-type amoebae. These amoebal variants display differences in cellular morphology, partial resistance to killing by bacteria, more bactericidal activity, and higher frequencies of lysosome fusion with the bacterial vacuole. Three proteins are present at lower levels in these variants than in wild-type amoebae, and matrix-assisted laser desorption ionization-time of flight mass spectrometry allowed identification of two of them as actin and hsp90. We found that specific inhibitors of hsp90 produce a similar phenotypic effect in macrophages. These data suggest that hsp90 plays a role in phagocytic and, possibly, bactericidal pathways that affect interactions of phagocytic cells with bacteria.
机译:环境原生动物与致病细菌的相互作用与哺乳动物巨噬细胞之间的相互作用有很多相似之处。由于单细胞原生动物早于哺乳动物宿主,因此环境生物膜中的相互作用可能已经选择了许多导致人类疾病的细菌毒力机制。为了更好地了解细菌与吞噬细胞的相互作用,我们开发了对 Acanthamoeba castellanii 变种的选择,这些变种对细菌病原体的杀灭具有更强的抵抗力。我们确定了四个变形虫克隆,与野生型变形虫相比,它们显示出减少的细菌吞噬作用,但对乳胶珠的吸收没有差异。这些变形虫显示出细胞形态的差异,对细菌杀灭的部分抗性,更多的杀菌活性以及溶酶体与细菌液泡融合的更高频率。与野生型变形虫相比,这些变体中存在的三种蛋白质含量较低,并且基质辅助激光解吸电离飞行时间质谱技术可以鉴定其中两个为肌动蛋白和hsp90。我们发现hsp90的特定抑制剂在巨噬细胞中产生类似的表型作用。这些数据表明,hsp90在吞噬细胞和可能影响吞噬细胞与细菌相互作用的杀菌途径中起作用。

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