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Does a redox cycle provide a mechanism for setting the capacity ofTI Does a redox cycle provide a mechanism for setting the capacity of neuroglobin to protect cells from apoptosis?

机译:氧化还原循环是否提供设定TI能力的机制?氧化还原循环是否提供设定神经珠蛋白保护细胞免于凋亡的能力的机制?

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We hypothesize that the various, previously reported, reactivities of neuroglobin with redox partners and oxygen provide for the establishment of a redox cycle within cells, such as neurons and retinal rod cells. Using native cell lysates, from cultured human cells of neuronal origin, we have estimated the rate of reduction of the oxidized form of neuroglobin in vivo. Furthermore we provide evidence that the cytosol of these cells contains factors (presumably enzymes) capable of employing either glutathione or NADH as re-reductants of ferric neuroglobin. Taken in conjunction with previous rate data, for the various redox reactions of neuroglobin, this information allows us to set up a computer model to estimate the steady state cellular level of the antiapoptotic ferrous form of neuroglobin. This model indicates that the steady state level of antiapoptotic neuroglobin is very sensitive to the cellular oxygen tension and moderately sensitive to the redox status of the cell. Further analysis indicates that such a system would be capable of significant modification, on the seconds time scale, following hypoxic transition, as is likely in stroke. We hypothesize that this mechanism might provide a moderately rapid mechanism for adjusting the antiapoptotic status of a cell, whilst the reaction of neuroglobin with mitochondrial cytochrome c provides a very rapid, but limited, capacity to intervene in the apoptotic pathway. (c) 2012 IUBMB Life, 2012
机译:我们假设先前已报道的各种神经球蛋白与氧化还原伙伴和氧气的反应性为细胞(例如神经元和视网膜杆细胞)内的氧化还原循环的建立提供了条件。使用来自神经元来源的培养人细胞的天然细胞裂解物,我们已经估算了体内神经球蛋白氧化形式的还原速率。此外,我们提供的证据表明,这些细胞的细胞质中含有能够利用谷胱甘肽或NADH作为铁神经球蛋白还原剂的因子(可能是酶)。结合先前的速率数据,针对神经球蛋白的各种氧化还原反应,此信息使我们能够建立计算机模型来估计神经球蛋白抗凋亡亚铁形式的稳态细胞水平。该模型表明抗凋亡神经球蛋白的稳态水平对细胞氧张力非常敏感,并且对细胞的氧化还原状态中等敏感。进一步的分析表明,这种系统将能够在缺氧过渡后的几秒钟时间内进行重大修改,就像在中风中一样。我们假设该机制可能为调节细胞的抗凋亡状态提供适度快速的机制,而神经球蛋白与线粒体细胞色素c的反应提供了非常快速但有限的干预细胞凋亡途径的能力。 (c)2012年IUBMB人生,2012年

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