首页> 外文期刊>Journal of Neuroscience Research >Evidence for non-transferrin-mediated uptake and release of iron and manganese in glial cell cultures from hypotransferrinemic mice.
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Evidence for non-transferrin-mediated uptake and release of iron and manganese in glial cell cultures from hypotransferrinemic mice.

机译:非转铁蛋白小鼠的神经胶质细胞培养物中非转铁蛋白介导的铁和锰的摄取和释放的证据。

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Transferrin (Tf) is accepted as the iron mobilization protein, but its role in transport of other metals is controversial. In this study, we used mixed glial cultures from hypotransferrinemic (Hp) mice to determine the dependence of these cells on transferrin for iron and manganese delivery and release. Hp mice have a splicing defect in the transferrin (Tf) gene, resulting in < 1% of the normal plasma levels of Tf. Cellular iron and manganese uptake increases over 24 hr in cultures of normal and Hp glial cells in the presence of standard concentrations of Tf in the media; although total 59iron uptake in the Hp mouse cultures was 2X greater than normal, 54Mn uptake was similar between the two groups. The absence of Tf in the media resulted in a significant increase in 59iron uptake in both normal and Hp glial but did not affect Mn uptake. Elevated Tf (10X normal) in the media reduced both 59iron and 54Mn uptake. Efflux of 59Iron and 54Mn occurred in normal and Hp cultures, indicating the existence of a dynamic exchange of metals, and that intracellular Tf is not necessary for metal release. However, in the absence of Tf in the media, significantly more iron was retained in the cells than if Tf were present in both normal and Hp glial cultures. 54Mn release was minimally affected by extracellular Tf. The data demonstrate that Tf is not required for iron and Mn uptake into glial cells. These data further demonstrate a dynamic metal exchange system for glial cells which is not dependent on intracellular Tf.
机译:转铁蛋白(Tf)被认为是铁动员蛋白,但其在其他金属运输中的作用引起争议。在这项研究中,我们使用来自低转铁蛋白(Hp)小鼠的混合胶质细胞培养物来确定这些细胞对铁和锰的传递和释放对转铁蛋白的依赖性。 Hp小鼠的运铁蛋白(Tf)基因存在剪接缺陷,导致正常血浆Tf的含量不到1%。在培养基中存在标准浓度的Tf的情况下,正常和Hp胶质细胞培养物中细胞对铁和锰的吸收会增加24小时。尽管Hp小鼠培养物中的59铁吸收总量比正常水平高2倍,但两组之间的54Mn吸收相似。培养基中不存在Tf导致正常和Hp神经胶质中59铁的摄取显着增加,但不影响Mn的摄取。培养基中的Tf升高(正常值的10倍)减少了59铁和54锰的吸收。在正常和Hp培养物中均发生59Iron和54Mn的外流,表明存在金属的动态交换,并且细胞内Tf对于金属释放不是必需的。但是,在培养基中不存在Tf的情况下,与正常和Hp神经胶质培养物中均存在Tf的情况相比,细胞中铁的保留量要多得多。 54Mn释放受细胞外Tf影响最小。数据表明,铁和锰摄入神经胶质细胞不需要Tf。这些数据进一步证明了不依赖于细胞内Tf的神经胶质细胞的动态金属交换系统。

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