首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Human serum transferrin: a tale of two lobes. Urea gel and steady state fluorescence analysis of recombinant transferrins as a function of pH, time, and the soluble portion of the transferrin receptor
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Human serum transferrin: a tale of two lobes. Urea gel and steady state fluorescence analysis of recombinant transferrins as a function of pH, time, and the soluble portion of the transferrin receptor

机译:人血清转铁蛋白:两个叶的故事。重组转铁蛋白的尿素凝胶和稳态荧光分析与pH,时间和转铁蛋白受体的可溶性部分的关系

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Iron release from human serum transferrin (hTF) has been studied extensively; however, the molecular details of the mechanism(s) remain incomplete. This is in part due to the complexity of this process, which is influenced by lobe–lobe interactions, the transferrin receptor (TFR), the salt effect, the presence of a chelator, and acidification within the endosome, resulting in iron release. The present work brings together many of the concepts and assertions derived from previous studies in a methodical, uniform, and visual manner. Examination of earlier work reveals some uncertainty due to sample and technical limitations. We have used a combination of steady-state fluorescence and urea gels to evaluate the effect of conformation, pH, time, and the soluble portion of the TFR (sTFR) on iron release from each lobe of hTF. The use of authentic recombinant monoferric and locked species removes any possibility of cross-contamination by acquisition of iron. Elimination of detergent by use of the sTFR provides a further technical advantage. We find that iron release from the N-lobe is very sensitive to the conformation of the C-lobe, but is insensitive to the presence of the sTFR or to changes in pH (between 5.6 and 6.4). Specifically, when the cleft of the C-lobe is locked, the urea gels indicate that only about half of the iron is completely removed from the cleft of the N-lobe. Iron release from the C-lobe is most affected by the presence of the sTFR and changes in pH, but is unaffected by the conformation of the N-lobe. A model for iron release from diferric hTF is provided to delineate our findings.
机译:从人血清转铁蛋白(hTF)释放铁的方法已得到广泛研究;但是,该机制的分子细节仍然不完整。部分原因是由于该过程的复杂性,该过程受叶瓣相互作用,转铁蛋白受体(TFR),盐效应,螯合剂的存在以及内体中酸化的影响,导致铁释放。本工作以系统,统一和直观的方式汇集了许多先前研究得出的概念和主张。对早期工作的检查发现由于样本和技术限制,存在一些不确定性。我们已经使用稳态荧光和尿素凝胶的组合来评估构象,pH,时间和TFR的可溶性部分(sTFR)对hTF每个叶中铁释放的影响。使用真正的重组单铁和锁定物种可消除因获取铁而造成交叉污染的任何可能性。通过使用sTFR消除洗涤剂可提供进一步的技术优势。我们发现从N瓣释放的铁对C瓣的构象非常敏感,但对sTFR的存在或pH值的变化(5.6和6.4之间)不敏感。具体而言,当C裂片的裂口被锁定时,尿素凝胶表明只有大约一半的铁从N裂片的裂口中完全去除了。 sTFR的存在和pH值的变化对从C瓣释放铁的影响最大,但不受N瓣构象的影响。提供了从二铁hTF释放铁的模型以描述我们的发现。

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