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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Increase in phagocytosis after geldanamycin treatment or heat shock: role of heat shock proteins.
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Increase in phagocytosis after geldanamycin treatment or heat shock: role of heat shock proteins.

机译:格尔德霉素治疗或热休克后吞噬作用增加:热休克蛋白的作用。

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摘要

The response to injury is activated at the systemic and cellular levels. At the systemic level, phagocytosis plays a key role in controlling infections and clearing necrotic and apoptotic cells. The expression of heat shock proteins (Hsp), which is a well-conserved process, is a major component of cellular response to stress. This study investigated the relationship between Hsps and phagocytosis. An increase in the phagocytosis of opsonized bacteria particles and latex beads was observed upon incubation of murine macrophages with geldanamycin (GA), a specific inhibitor of the Hsp90 family of proteins. The effect of GA on phagocytosis was blocked by coincubation with inhibitors of transcription (actinomycin D) or translation (cycloheximide), suggesting that gene expression was required. Because expression of Hsps has been observed after GA treatment, the effect of heat shock on phagocytosis was investigated. Similar to GA treatment, heat shock resulted in an actinomycin D-sensitive elevation of phagocytosis, which suggests that Hsps are involved. The increase in phagocytosis after GA treatment was not due to increased binding of opsonized particles to their respective receptors on the macrophage surface or to elevated oxidative stress. However, it was correlated with a rapid polymerization of actin in proximity to the plasma membrane. These results suggest that Hsps play a role in the modulation of the phagocytic process, which is part of the stress response.
机译:对损伤的反应在全身和细胞水平上被激活。在系统水平上,吞噬作用在控制感染和清除坏死和凋亡细胞中起着关键作用。热休克蛋白(Hsp)的表达是一个保守的过程,是细胞对应激反应的主要组成部分。本研究调查了Hsps与吞噬作用之间的关系。鼠巨噬细胞与格尔德霉素(GA)(一种Hsp90蛋白家族的特异性抑制剂)孵育后,观察到调理细菌颗粒和乳胶珠的吞噬作用增加。通过与转录抑制剂(放线菌素D)或翻译抑制剂(环己酰亚胺)共孵育,GA对吞噬作用的作用被阻断,表明需要基因表达。因为在GA处理后已观察到Hsps的表达,所以研究了热休克对吞噬作用的影响。与GA处理类似,热休克导致放线菌素D敏感的吞噬作用升高,这表明Hsps参与其中。 GA处理后吞噬作用的增加不是由于调理过的颗粒与其在巨噬细胞表面上各自的受体的结合增加或氧化应激升高。然而,这与肌动蛋白在质膜附近的快速聚合有关。这些结果表明,Hsps在吞噬过程的调节中起作用,这是应激反应的一部分。

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