首页> 外文期刊>Cell Stress and Chaperones >Extracellular heat shock proteins, cellular export vesicles, and the Stress Observation System: A form of communication during injury, infection, and cell damage It is never known how far a controversial finding will go! Dedicated to Ferruccio Ritossa
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Extracellular heat shock proteins, cellular export vesicles, and the Stress Observation System: A form of communication during injury, infection, and cell damage It is never known how far a controversial finding will go! Dedicated to Ferruccio Ritossa

机译:细胞外热休克蛋白,细胞输出囊泡和应激观察系统:在损伤,感染和细胞损伤期间的一种交流形式,目前尚不清楚有争议的发现能走多远!致力于Ferruccio Ritossa

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摘要

Heat shock proteins (hsp) have been found to play a fundamental role in the recovery from multiple stress conditions and to offer protection from subsequent insults. The function of hsp during stress goes beyond their intracellular localization and chaperone role as they have been detected outside cells activating signaling pathways. Extracellular hsp are likely to act as indicators of the stress conditions, priming other cells, particularly of the immune system, to avoid the propagation of the insult. Some extracellular hsp, for instance Hsp70, are associated with export vesicles, displaying a robust activation of macrophages. We have coined the term Stress Observation System (SOS) for the mechanism for sensing extracellular hsp, which we propose is a form of cellular communication during stress conditions. An enigmatic and still poorly understood process is the mechanism for the release of hsp, which do not contain any consensus secretory signal. The export of hsp appears to be a very complex phenomenon encompassing different alternative pathways. Moreover, extracellular hsp may not come in a single flavor, but rather in a variety of physical conditions. This review addresses some of our current knowledge about the release and function of extracellular hsp, in particular those associated with vesicles.
机译:已经发现,热休克蛋白(hsp)在从多种压力条件下恢复中起着基本作用,并为后续的伤害提供保护。热休克蛋白在应激过程中的功能超出了它们的细胞内定位和分子伴侣的作用,因为已经在激活信号通路的细胞外检测到它们。细胞外热休克很可能充当应激状态的指标,引发其他细胞,尤其是免疫系统的免疫,从而避免损伤扩散。一些细胞外的热休克蛋白,例如热休克蛋白70,与出口囊泡相关,显示出巨噬细胞的强力激活。我们已经创造了术语“压力观察系统”(SOS)来感知细胞外hsp的机制,我们提出这是压力条件下细胞通讯的一种形式。 hsp释放的机制是一个谜团,但仍然很少为人所知,它不包含任何共有的分泌信号。热休克蛋白的输出似乎是一个非常复杂的现象,涵盖了不同的替代途径。而且,细胞外热休克蛋白可能不是单一的风味,而是多种物理条件。这篇评论解决了我们目前有关细胞外hsp释放和功能的一些知识,特别是与囊泡有关的知识。

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