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Hierarchical and Cybernetic Nature of Biologic Systems and Their Relevance to Homeostatic Adaptation to Low-level Exposures to Oxidative Stress-inducing Agents

机译:生物系统的分层和控制论性质及其与低水平暴露于氧化应激诱导剂的稳态适应的关系

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摘要

During evolution in an aerobic environment, multicellular organisms survived by adaptive responses to both the endogenous oxidative metabolism in the cells of the organism and the chemicals and low-level radiation to which they had been exposed. The defense repertoire exists at all levels of the biological hierarchy-from the molecular and biochemical level to the cellular and tissue level to the organ and organ system level. Cells contain preventive antioxidants to suppress oxidative damage to membranes. Cells also contain proteins and DNA; built-in redundancies for damaged molecules and organelles; tightly coupled redox systems; pools of reductants; antioxidants; DNA repair mechanisms and sensitive sensor molecules such as nuclear factor kappa beta; and signal transduction mechanisms affecting both transcription and post-translational modification of proteins needed to cope with oxidative stress.
机译:在有氧环境中进化过程中,多细胞生物通过对生物细胞中的内源性氧化代谢以及它们所接触的化学物质和低水平辐射的适应性反应而存活下来。从分子和生化水平到细胞和组织水平再到器官和器官系统水平,防御库存在于生物等级的各个级别。细胞含有预防性的抗氧化剂,以抑制对膜的氧化损伤。细胞还含有蛋白质和DNA。内置的冗余用于损坏的分子和细胞器;紧密耦合的氧化还原系统;还原剂池;抗氧化剂; DNA修复机制和敏感的传感器分子,例如核因子κβ;信号转导机制会影响蛋白质的转录和翻译后修饰,以应对氧化应激。

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