Key Laboratory of Protein and Peptide Pharmaceuticals, CAS-University of Tokyo Joint Laboratory of Structural Virology and Immunology, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2013 Jul-Aug;5(4):287-98. doi: 10.1002/wnan.1221. Epub 2013 Apr 18.
Ferritin, a major iron storage protein found in most living organisms, is composed of a 24-subunit protein cage with a hollow interior cavity. Serum ferritin serves as a critical marker to detect total body iron status. However, recent research reveals a number of novel functions of ferritin besides iron storage; for example, a ferritin receptor, transferrin receptor 1 (TfR1), has been identified and serum ferritin levels are found to be elevated in tumors. A particular new finding is that magnetoferritin nanoparticles, biomimetically synthesized using H-chain ferritin to form a 24-subunit cage with an iron oxide core, possess intrinsic dual functionality, the protein shell specifically targeting tumors and the iron oxide core catalyzing peroxidase substrates to produce a color reaction allowing visualization of tumor tissues. Here we attempt to summarize current research on ferritin, particularly newly identified functions related to tumors, in order to address current challenges and highlight future directions.
铁蛋白是一种存在于大多数生物体内的主要铁储存蛋白,由一个 24 亚基蛋白笼组成,内部有空腔。血清铁蛋白是检测全身铁状态的关键标志物。然而,最近的研究揭示了铁蛋白除了储存铁以外的许多新功能;例如,已经鉴定出一种铁蛋白受体,转铁蛋白受体 1(TfR1),并且发现肿瘤中血清铁蛋白水平升高。一个特别新的发现是,使用 H 链铁蛋白仿生合成的磁铁蛋白纳米颗粒形成一个 24 亚基笼,内部有一个氧化铁核心,具有内在的双重功能,即蛋白质外壳特异性靶向肿瘤,氧化铁核心催化过氧化物酶底物产生颜色反应,从而可视化肿瘤组织。在这里,我们试图总结铁蛋白的当前研究,特别是与肿瘤相关的新发现的功能,以应对当前的挑战并突出未来的方向。
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