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用电喷雾电离质谱法研究转铁蛋白N叶中铁释放的动力学。

Dynamics of iron release from transferrin N-lobe studied by electrospray ionization mass spectrometry.

作者信息

Gumerov D R, Kaltashov I A

机构信息

Department of Chemistry and Program in Molecular and Cellular Biology, University of Massachusetts, Amherst 01003, USA.

出版信息

Anal Chem. 2001 Jun 1;73(11):2565-70. doi: 10.1021/ac0015164.

Abstract

Transferrins constitute a class of metalloproteins that are involved in circulatory iron transport in a variety of species. The metal ion-binding properties of these proteins have been the focus of extensive research efforts in the past decade due to their extreme importance in a variety of biological and healthcare-related fields. The large size of these proteins, as well as the presence of high-spin metal ions (e.g., Fe3+), limits the use of NMR. In this work, we report on the use of electrospray ionization mass spectrometry (ESI MS) to study dynamics of the transferrin system in vitro under conditions that are designed to mimic the endosomal environment. ESI MS is shown to provide valuable insights into the mechanistic aspects of metal ion-binding/release by transferrins and is complementary to other spectroscopic techniques. Conformational stability of the complex is evaluated based on the appearance of the charge-state distribution of protein ions, while the composition of the protein-ligand complex is determined based on the mass of the protein ions. In the absence of iron chelators, a stepwise dissociation of the ternary complex (protein-metal ion-synergistic anion) is observed as the solution pH is gradually decreased. Although the release of synergistic anion from the complex is initiated at typical endosomal pH levels (i.e., 5.5), metal ion remains largely bound to the protein until the pH is lowered to a level of approximately 4.5. Under these conditions, a significant fraction of the protein populates unfolded conformations. In stark contrast to this behavior, addition of an iron chelating agent (citrate) to the protein solution results in facile iron release at typical endosomal pH levels without any detectable unfolding of the protein. The mass spectral data lends further credibility to the notion that the holoprotein samples conformations that are specific to the apo form (e.g., "open conformation"), from which iron dissociation most likely occurs. The results of the present study demonstrate that ESI MS can be used to model metal ion release from transferrin under conditions that are designed to mimic the physiological environment.

摘要

转铁蛋白是一类金属蛋白,参与多种物种的循环铁运输。由于这些蛋白质在各种生物和医疗相关领域具有极其重要的意义,其金属离子结合特性在过去十年一直是广泛研究的重点。这些蛋白质的尺寸较大,以及存在高自旋金属离子(如Fe3+),限制了核磁共振(NMR)的应用。在这项工作中,我们报告了使用电喷雾电离质谱(ESI MS)来研究转铁蛋白系统在体外模拟内体环境条件下的动力学。结果表明,ESI MS能够为转铁蛋白结合/释放金属离子的机制方面提供有价值的见解,并且是其他光谱技术的补充。基于蛋白质离子电荷态分布的出现来评估复合物的构象稳定性,而基于蛋白质离子的质量来确定蛋白质-配体复合物的组成。在没有铁螯合剂的情况下,随着溶液pH值逐渐降低,观察到三元复合物(蛋白质-金属离子-协同阴离子)的逐步解离。尽管协同阴离子从复合物中的释放始于典型的内体pH水平(即5.5),但金属离子在很大程度上仍与蛋白质结合,直到pH值降低到约4.5的水平。在这些条件下,相当一部分蛋白质呈现未折叠构象。与此行为形成鲜明对比的是,向蛋白质溶液中添加铁螯合剂(柠檬酸盐)会导致在典型的内体pH水平下铁的轻易释放,而蛋白质没有任何可检测到的展开。质谱数据进一步支持了全蛋白样品呈现脱辅基形式特有的构象(例如“开放构象”)的观点,铁最有可能从该构象中解离。本研究结果表明,ESI MS可用于在模拟生理环境的条件下模拟转铁蛋白释放金属离子的过程。

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