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脱铁转铁蛋白和全铁转铁蛋白与铁转运蛋白和铁铜转运蛋白相互作用不同,以调节血脑屏障处的铁释放。

Apo- and holo- transferrin differentially interact with ferroportin and hephaestin to regulate iron release at the blood-brain barrier.

作者信息

Baringer Stephanie L, Palsa Kondaiah, Simpson Ian A, Connor James R

机构信息

Department of Neurosurgery, Penn State College of Medicine, Hershey, PA, USA.

Department of Neural and Behavioral Sciences, Penn State College of Medicine, Hershey, PA, USA.

出版信息

bioRxiv. 2023 Jan 10:2023.01.10.522344. doi: 10.1101/2023.01.10.522344.

Abstract

BACKGROUND

Apo- (iron free) and holo- (iron bound) transferrin (Tf) participate in precise regulation of brain iron uptake at endothelial cells of the blood-brain barrier. Apo-Tf indicates an iron deficient environment and stimulates iron release, while holo-Tf indicates an iron sufficient environment and suppresses additional iron release. Free iron is exported through ferroportin, with hephaestin as an aid to the process. Until now, the molecular mechanism of apo- and holo-Tf's influence on iron release was largely unknown.

METHODS

Here we use a variety of cell culture techniques, including co-immunoprecipitation and proximity ligation assay, in iPSC-derived endothelial cells and HEK 293 cells to investigate the mechanism of apo- and holo-Tf's influence over iron release. We placed our findings in physiological context by further deciphering how hepcidin played a role in this mechanism as well.

RESULTS

We demonstrate that holo-Tf induces the internalization of ferroportin through the established ferroportin degradation pathway. Furthermore, holo-Tf directly binds to ferroportin, whereas apo-Tf directly binds to hephaestin. Only pathological levels of hepcidin disrupt the interaction between holo-Tf and ferroportin, and no amount of hepcidin disrupts the interaction between apo-Tf and hephaestin. The disruption of the holo-Tf and ferroportin interaction by hepcidin is due to hepcidin's ability to rapidly internalize ferroportin compared to holo-Tf.

CONCLUSIONS

These novel findings provide a molecular mechanism for apo- and holo-Tf regulation of iron release from endothelial cells. They further demonstrate how hepcidin impacts these protein-protein interactions, and offer a model for how holo-Tf and hepcidin corporate to suppress iron release. We have established a more thorough understanding of the mechanisms behind iron release regulation with great clinical impact for a variety of neurological conditions in which iron release is dysregulated.

摘要

背景

脱铁(无铁)转铁蛋白(Tf)和全铁(结合铁)转铁蛋白参与血脑屏障内皮细胞对脑铁摄取的精确调节。脱铁转铁蛋白表明铁缺乏环境并刺激铁释放,而全铁转铁蛋白表明铁充足环境并抑制额外的铁释放。游离铁通过铁转运蛋白输出,铜蓝蛋白辅助这一过程。到目前为止,脱铁和全铁转铁蛋白对铁释放影响的分子机制在很大程度上尚不清楚。

方法

在这里,我们使用多种细胞培养技术,包括免疫共沉淀和邻近连接分析,在诱导多能干细胞衍生的内皮细胞和人胚肾293细胞中研究脱铁和全铁转铁蛋白对铁释放影响的机制。我们通过进一步解读铁调素在该机制中如何发挥作用,将我们的发现置于生理背景中。

结果

我们证明全铁转铁蛋白通过既定的铁转运蛋白降解途径诱导铁转运蛋白的内化。此外,全铁转铁蛋白直接与铁转运蛋白结合,而脱铁转铁蛋白直接与铜蓝蛋白结合。只有病理性水平的铁调素会破坏全铁转铁蛋白与铁转运蛋白之间的相互作用,而任何量的铁调素都不会破坏脱铁转铁蛋白与铜蓝蛋白之间的相互作用。铁调素对全铁转铁蛋白与铁转运蛋白相互作用的破坏是由于铁调素与全铁转铁蛋白相比能够快速内化铁转运蛋白。

结论

这些新发现为脱铁和全铁转铁蛋白调节内皮细胞铁释放提供了分子机制。它们进一步证明了铁调素如何影响这些蛋白质-蛋白质相互作用,并提供了一个全铁转铁蛋白和铁调素共同抑制铁释放的模型。我们对铁释放调节背后的机制有了更全面的理解,这对多种铁释放失调的神经系统疾病具有重大临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6630/9882075/7560cd843981/nihpp-2023.01.10.522344v1-f0001.jpg

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