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多胺及其代谢:从维持生理内稳态到疾病的介导。

Polyamines and Their Metabolism: From the Maintenance of Physiological Homeostasis to the Mediation of Disease.

机构信息

Division of Nephrology, Department of Internal Medicine, University of New Mexico Health Sciences Center, Albuquerque, NM 87131, USA.

Research Service, New Mexico Veterans Administration Medical Center, Albuquerque, NM 87108, USA.

出版信息

Med Sci (Basel). 2022 Jul 15;10(3):38. doi: 10.3390/medsci10030038.

Abstract

The polyamines spermidine and spermine are positively charged aliphatic molecules. They are critical in the regulation of nucleic acid and protein structures, protein synthesis, protein and nucleic acid interactions, oxidative balance, and cell proliferation. Cellular polyamine levels are tightly controlled through their import, export, synthesis, and catabolism. Enzymes and enzymatic cascades involved in polyamine metabolism have been well characterized. This knowledge has been used for the development of novel compounds for research and medical applications. Furthermore, studies have shown that disturbances in polyamine levels and their metabolic pathways, as a result of spontaneous mutations in patients, genetic engineering in mice or experimentally induced injuries in rodents, are associated with multiple maladaptive changes. The adverse effects of altered polyamine metabolism have also been demonstrated in models. These observations highlight the important role these molecules and their metabolism play in the maintenance of physiological normalcy and the mediation of injury. This review will attempt to cover the extensive and diverse knowledge of the biological role of polyamines and their metabolism in the maintenance of physiological homeostasis and the mediation of tissue injury.

摘要

多胺精脒和精胺是带正电荷的脂类分子。它们在调节核酸和蛋白质结构、蛋白质合成、蛋白质和核酸相互作用、氧化平衡以及细胞增殖方面发挥着关键作用。细胞内多胺水平通过其摄取、输出、合成和分解代谢来严格控制。多胺代谢中涉及的酶和酶级联已得到很好的描述。这些知识已被用于开发用于研究和医学应用的新型化合物。此外,研究表明,由于患者自发突变、小鼠基因工程或啮齿动物实验性损伤导致的多胺水平及其代谢途径的紊乱与多种适应性改变有关。在模型中也证明了改变的多胺代谢的不良影响。这些观察结果突出了这些分子及其代谢在维持生理正常和介导损伤方面的重要作用。本综述将尝试涵盖多胺及其代谢在维持生理内稳态和介导组织损伤方面的生物学作用的广泛而多样的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f65/9326668/f6aa26af8d7a/medsci-10-00038-g001.jpg

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