Ortiz E, Pasquini J M, Thompson K, Felt B, Butkus G, Beard J, Connor J R
Biological Chemistry Department, School of Pharmacy and Biochemistry, University of Buenos Aires, Buenos Aires, Argentina.
J Neurosci Res. 2004 Sep 1;77(5):681-9. doi: 10.1002/jnr.20207.
Several observations suggest that iron is an essential factor in myelination and oligodendrocyte biology. However, the specific role of iron in these processes remains to be elucidated. This role could be as an essential cofactor in metabolic processes or as a transcriptional or translational regulator. In this study, we used animals models each with a unique defect in iron availability, storage, or transfer to test the hypothesis that disruptions in these mechanisms affect myelinogenesis and myelin composition. Disruption of iron availability either by limiting dietary iron or by altering iron storage capacity resulted in a decrease in myelin proteins and lipids but not the iron content of myelin. Among the integral myelin proteins, proteolipid protein was most consistently affected, suggesting that limiting iron to oligodendrocytes results not only in hypomyelination but also in a decrease in myelin compaction. Mice deficient in transferrin must receive transferrin injections beginning at birth to remain viable, and these mice had increases in all of the myelin components and in the iron content of the myelin. This finding indicates that the loss of endogenous iron mobility in oligodendrocytes could be overcome by application of exogenous transferrin. Overall, the results of this study demonstrate how myelin composition can be affected by loss of iron homeostasis and reveal specific chronic changes in myelin composition that may affect behavior and attempts to rescue myelin deficits.
多项观察结果表明,铁是髓鞘形成和少突胶质细胞生物学中的一个关键因素。然而,铁在这些过程中的具体作用仍有待阐明。这一作用可能是作为代谢过程中的必需辅助因子,或是作为转录或翻译调节因子。在本研究中,我们使用了动物模型,每种模型在铁的可用性、储存或转运方面都有独特缺陷,以检验以下假设:这些机制的破坏会影响髓鞘形成和髓鞘组成。通过限制饮食中的铁或改变铁储存能力来破坏铁的可用性,会导致髓鞘蛋白和脂质减少,但不会使髓鞘中的铁含量降低。在完整的髓鞘蛋白中,蛋白脂质蛋白受影响最为一致,这表明限制少突胶质细胞的铁供应不仅会导致髓鞘形成不足,还会使髓鞘紧密性降低。缺乏转铁蛋白的小鼠必须从出生开始接受转铁蛋白注射才能存活,这些小鼠的所有髓鞘成分以及髓鞘中的铁含量都有所增加。这一发现表明,通过应用外源性转铁蛋白可以克服少突胶质细胞内源性铁流动性的丧失。总体而言,本研究结果证明了铁稳态的丧失如何影响髓鞘组成,并揭示了髓鞘组成中可能影响行为以及挽救髓鞘缺陷的特定慢性变化。