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铁在癌症中的作用。

Role of iron in cancer.

机构信息

Division of Cancer Biology, National Cancer Institute, NIH, 9609 Medical Center Drive, Rockville, MD, 20850, United States.

出版信息

Semin Cancer Biol. 2021 Nov;76:189-194. doi: 10.1016/j.semcancer.2021.04.001. Epub 2021 Apr 24.

Abstract

Iron is an essential metal for cellular metabolism. The reduced form of iron is a cofactor in numerous redox reactions in the cell and is therefore required for many vital physiological functions. Since iron is an oxidatively active metal, its homeostasis is tightly regulated in healthy cell. Most of iron exists in a protein-bound form, in erythrocytes as the heme compound hemoglobin, and in storage proteins such as ferritin, hemosiderin and myoglobin. Iron also is bound to proteins and non-heme enzymes involved in oxidation-reduction reactions and the transfer of electrons. There is no free iron inside the cell, however a small fraction of loosely bound iron is found in the cytoplasm. This poorly defined pool of ferrous iron is called labile iron pool. Under pathological conditions iron homeostasis may be disrupted at different levels including absorption, systemic transportation, and cellular uptake and storage. Cancer cells display dysregulated iron homeostasis and, for reasons yet poorly understood, require more iron for their metabolism and growth. As a result, in cancer cells labile iron pool is increased, and loosely bound iron catalyzes Fenton reaction and perhaps other reactions that generate reactive oxygen species. Oxygen-derived free radicals produce DNA mutations, damage proteins and lipids resulting in either cell death or cell transformation.

摘要

铁是细胞代谢所必需的金属。铁的还原形式是细胞中许多氧化还原反应的辅助因子,因此是许多重要生理功能所必需的。由于铁是一种氧化活性金属,其在健康细胞中的稳态受到严格调控。大部分铁以与蛋白质结合的形式存在,在红细胞中为血红素化合物血红蛋白,在储存蛋白如铁蛋白、含铁血黄素和肌红蛋白中也存在。铁还与参与氧化还原反应和电子转移的蛋白质和非血红素酶结合。然而,细胞内没有游离的铁,只有一小部分松散结合的铁存在于细胞质中。这个定义不明确的亚铁池称为不稳定铁池。在病理条件下,铁稳态可能在包括吸收、全身运输以及细胞摄取和储存在内的不同水平上受到破坏。癌细胞表现出铁稳态失调,其原因尚不清楚,但为了代谢和生长,它们需要更多的铁。因此,在癌细胞中不稳定铁池增加,并且松散结合的铁催化芬顿反应和可能产生活性氧的其他反应。氧衍生的自由基会导致 DNA 突变、蛋白质和脂质损伤,导致细胞死亡或细胞转化。

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