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MagA expression attenuates iron export activity in undifferentiated multipotent P19 cells

机译:MagA表达减弱未分化的多能P19细胞中的铁输出活性

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摘要

Magnetic resonance imaging (MRI) is a non-invasive imaging modality used in longitudinal cell tracking. Previous studies suggest that MagA, a putative iron transport protein from magnetotactic bacteria, is a useful gene-based magnetic resonance contrast agent. Hemagglutinin-tagged MagA was stably expressed in undifferentiated embryonic mouse teratocarcinoma, multipotent P19 cells to provide a suitable model for tracking these cells during differentiation. Western blot and immunocytochemistry confirmed the expression and membrane localization of MagA in P19 cells. Surprisingly, elemental iron analysis using inductively-coupled plasma mass spectrometry revealed significant iron uptake in both parental and MagA-expressing P19 cells, cultured in the presence of iron-supplemented medium. Withdrawal of this extracellular iron supplement revealed unexpected iron export activity in P19 cells, which MagA expression attenuated. The influence of iron supplementation on parental and MagA-expressing cells was not reflected by longitudinal relaxation rates. Measurement of transverse relaxation rates (R2* and R2) reflected changes in total cellular iron content but did not clearly distinguish MagA-expressing cells from the parental cell type, despite significant differences in the uptake and retention of total cellular iron. Unlike other cell types, the reversible component R2′ (R2* ‒ R2) provided only a moderately strong correlation to amount of cellular iron, normalized to amount of protein. This is the first report to characterize MagA expression in a previously unrecognized iron exporting cell type. The interplay between contrast gene expression and systemic iron metabolism substantiates the potential for diverting cellular iron toward the formation of a novel iron compartment, however rudimentary when using a single magnetotactic bacterial gene expression system like magA. Since relatively few mammalian cells export iron, the P19 cell line provides a tractable model of ferroportin activity, suitable for magnetic resonance analysis of key iron-handling activities and their influence on gene-based MRI contrast.
机译:磁共振成像(MRI)是纵向细胞跟踪中使用的一种非侵入性成像方式。先前的研究表明,MagA是一种来自趋磁细菌的铁转运蛋白,是一种有用的基于基因的磁共振造影剂。血凝素标记的MagA在未分化的胚胎小鼠畸胎瘤,多能P19细胞中稳定表达,为在分化过程中追踪这些细胞提供了合适的模型。 Western印迹和免疫细胞化学证实了MagA在P19细胞中的表达和膜定位。出乎意料的是,使用电感耦合等离子体质谱法进行元素铁分析,结果表明,在存在铁补充培养基的情况下培养的亲代和表达MagA的P19细胞均具有明显的铁摄取。撤出这种细胞外铁补充剂后,P19细胞中的铁输出活性异常,MagA表达减弱。纵向松弛率未反映出补充铁对亲代和表达MagA的细胞的影响。横向弛豫率(R2 *和R2)的测量反映了总细胞铁含量的变化,但是尽管总细胞铁的摄取和保留能力存在显着差异,但并未清楚地将表达MagA的细胞与亲代细胞类型区分开。与其他细胞类型不同,可逆成分R2'(R2 * R2)与细胞铁含量(以蛋白质含量归一化)仅提供中等程度的相关性。这是第一个描述以前无法识别的铁输出细胞类型中MagA表达特征的报告。对比基因表达与全身铁代谢之间的相互作用证实了将细胞铁转移至形成新的铁区室的潜力,但是当使用单个趋磁细菌基因表达系统(如magA)时是基本的。由于很少有哺乳动物细胞输出铁,因此P19细胞系提供了铁转运蛋白活性的易处理模型,适用于关键铁处理活性的磁共振分析及其对基于基因的MRI对比的影响。

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