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Stress as an intercellular signal: the emergence of stress-associated molecular patterns (SAMP).

机译:作为细胞间信号的应激:应激相关分子模式(SAMP)的出现。

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摘要

Abstrct Cells are continuously exposed to stressful situations that generally entail generation of reactive oxygen species and other redox alterations. Low levels of stress are physiological and can transmit essential survival or adaptive signals. At higher levels, however, the responses become maladaptive and cause damage. Frequently, stressful events occurring in a few cells propagate, resulting in tissue or even systemic response. Here we review recent evidence suggesting that stressed cells signal their state by expressing on their surface and secreting suitable molecular clues, which we propose to term Stress-Associated Molecular Patterns (SAMP). A unifying mechanism seems to involve the release of oxidoreductases and redox modifiers into the intercellular space, with structural and functional alterations in key signaling molecules. These observations open the way to novel therapeutic strategies.
机译:Abstrct细胞持续处于压力状态,通常需要产生活性氧和其他氧化还原变化。低压力水平是生理性的,可以传递基本的生存或适应性信号。但是,在较高级别上,响应会变得适应不良,并造成损害。通常,在少数细胞中发生的应激事件会传播,从而导致组织乃至全身反应。在这里,我们回顾了最近的证据,这些证据表明应激细胞通过在其表面表达并分泌合适的分子线索来发出信号,这些信号被我们称为“应激相关分子模式”(SAMP)。统一的机制似乎涉及释放氧化还原酶和氧化还原修饰剂到细胞间空间,并在关键信号分子中发生结构和功能改变。这些发现为新型治疗策略开辟了道路。

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