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Molecular Architecture of the 'Stressosome,' a Signal Integration and Transduction Hub

机译:信号整合和传导枢纽“弹性体”的分子结构

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A commonly used strategy by microorganisms to survive multiple stresses involves a signal transduction cascade that increases the expression of stress-responsive genes. Stress signals can be integrated by a multiprotein signaling hub that responds to various signals to effect a single outcome. We obtained a medium-resolution cryo-electron microscopy reconstruction of the 1.8-megadalton "stressosome" from Bacillus subtilis. Fitting known crystal structures of components into this reconstruction gave a pseudoatomic structure, which had a virus capsid-like core with sensory extensions. We suggest that the different sensory extensions respond to different signals, whereas the conserved domains in the core integrate the varied signals. The architecture of the stressosome provides the potential for cooperativity, suggesting that the response could be tuned dependent on the magnitude of chemophysical insult.
机译:微生物在多种压力下生存的常用策略涉及信号转导级联,该信号转导级联增加了压力响应基因的表达。应激信号可以通过对各种信号作出响应以实现单个结果的多蛋白信号枢纽进行整合。我们从枯草芽孢杆菌中获得了1.8兆道尔顿“应力体”的中分辨率冷冻电子显微镜重建。将已知成分的晶体结构拟合到该重建物中,得到假原子结构,其具有带有感官延伸的病毒衣壳样核心。我们建议,不同的感觉延伸对不同的信号作出反应,而核心中的保守域整合了变化的信号。应激体的结构提供了合作的潜力,表明可以根据化学物理损伤的程度来调节反应。

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