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Systemic redox regulation of cellular information processing

机译:细胞信息处理的系统氧化还原调节

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摘要

Receptor-mediated signaling leads to transient changes in redox state, resulting in reversible oxidation of protein cysteine thiols. Numerous signaling proteins have been identified as being redox sensitive; however, to date, most investigations have focused on the ramifications of isolated protein modifications on cellular phenotypes. We propose that reversible thiol oxidation of proteins in a signaling network and their systemic interactions introduce features in the dynamics and control of cellular responses that are unique compared with isolated oxidative protein modifications. Simulations of dynamic redox regulation in different cellular contexts reveal feasible regulatory features for future experimental investigation. We suggest that location within a network, compartmentalization, and the degree of connectivity between redox proteins can dramatically modulate cellular information processing.
机译:受体介导的信号传导导致氧化还原状态的瞬时变化,导致蛋白质半胱氨酸硫醇的可逆氧化。已经鉴定出许多信号蛋白对氧化还原敏感。然而,迄今为止,大多数研究都集中在分离的蛋白质修饰对细胞表型的影响上。我们提出,信号网络中蛋白质的可逆硫醇氧化及其系统相互作用在动态和控制细胞反应中引入了特征,与分离的氧化蛋白质修饰相比,这些特征是独特的。在不同的细胞环境中动态氧化还原调节的模拟揭示了可行的调节功能,供将来进行实验研究。我们建议网络中的位置,隔离和氧化还原蛋白之间的连接程度可以大大调节细胞信息处理。

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