Chung Jayong, Wessling-Resnick Marianne
Department of Nutrition, Harvard School of Public Health, 665 Huntington Avenue, Boston, MA 02115, USA.
Crit Rev Clin Lab Sci. 2003 Apr;40(2):151-82. doi: 10.1080/713609332.
Iron homeostasis is primarily maintained through regulation of its transport. This review summarizes recent discoveries in the field of iron transport that have shed light on the molecular mechanisms of dietary iron uptake, pathways for iron efflux to and between peripheral tissues, proteins implicated in organellar transport of iron (particularly the mitochondrion), and novel regulators that have been proposed to control iron assimilation. The transport of both transferrin-bound and nontransferrin-bound iron to peripheral tissues is discussed. Finally, the regulation of iron transport is also considered at the molecular level, with posttranscriptional, transcriptional, and posttranslational control mechanisms being reviewed.
铁稳态主要通过对其转运的调节来维持。本综述总结了铁转运领域的最新发现,这些发现揭示了膳食铁吸收的分子机制、外周组织之间及向外周组织的铁流出途径、与铁的细胞器转运(特别是线粒体)相关的蛋白质,以及被认为可控制铁同化的新型调节因子。文中讨论了转铁蛋白结合铁和非转铁蛋白结合铁向外周组织的转运。最后,还从分子水平考虑了铁转运的调节,并对转录后、转录和翻译后控制机制进行了综述。