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Interlobe communication in human serum transferrin: metal binding and conformational dynamics investigated by electrospray ionization mass spectrometry.

机译:人血清转铁蛋白中的叶间通讯:通过电喷雾电离质谱研究的金属结合和构象动力学。

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摘要

Human serum transferrin (hTF) is an iron transport protein, comprising two lobes (N and C), each containing a single metal-binding center. Despite substantial structural similarity between the two lobes, studies have demonstrated the existence of significant differences in their metal-binding properties. The nature of these differences has been elucidated through the use of electrospray ionization mass spectrometry to study both metal retention and conformational properties of hTF under a variety of conditions. In the absence of chelating agents or nonsynergistic anions, the diferric form of hTF remains intact until the pH is lowered to 4.5. The monoferric form of hTF retains the compact conformation until the pH is lowered to 4.0, whereas the apoprotein becomes partially unfolded at pH as high as 5.5. Selective (lobe-specific) modulation of the iron-binding properties of hTF using recombinant forms of the protein (in which the pH-sensitive elements in each lobe were mutated) verifies that the N-lobe of the protein has a lower affinity for ferric ion. Surprisingly, the apo-N-lobe is significantly less flexible compared to the apo-C-lobe. Furthermore, the conformation of the iron-free N-lobe is stabilized when the C-lobe contains iron, confirming the existence of an interlobe interaction within the protein. The experimental results provide strong support for the earlier suggestion that hTF interacts with its receptor (TFR) primarily through the C-lobe both at the cell surface and inside the endosome.
机译:人血清转铁蛋白(hTF)是一种铁转运蛋白,包含两个叶(N和C),每个叶都包含一个金属结合中心。尽管两个叶之间在结构上有很大的相似性,但研究表明它们的金属结合特性存在显着差异。通过使用电喷雾电离质谱法研究了hTF在各种条件下的金属保留和构象特性,已经阐明了这些差异的性质。在没有螯合剂或非协同阴离子的情况下,hTF的二铁形式保持完整,直到pH值降至4.5。 hTF的单铁形式保留紧凑的构象,直到pH降低至4.0,而载脂蛋白在pH高达5.5时部分展开。使用蛋白质的重组形式(其中每个叶的pH敏感元素均发生突变)对hTF的铁结合特性进行选择性(叶特异性)调节,验证了蛋白质的N叶对三价铁的亲和力较低离子。令人惊讶的是,与Apo-C-叶相比,Apo-N-叶的柔韧性明显较低。此外,当C-叶含有铁时,无铁的N-叶的构象被稳定,从而证实了蛋白质内叶间相互作用的存在。实验结果为hTF主要通过细胞表面和内体内部的C瓣与其受体(TFR)相互作用的早期建议提供了有力的支持。

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