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铽螯合,人转铁蛋白的特异性荧光标记。鉴于其在缺乏碳水化合物转铁蛋白(CDT)的高效液相色谱分析中的应用,对条件进行优化。

Terbium chelation, a specific fluorescent tagging of human transferrin. Optimization of conditions in view of its application to the HPLC analysis of carbohydrate-deficient transferrin (CDT).

作者信息

Nicotra Silvia, Sorio Daniela, Filippi Giulia, De Gioia Luca, Paterlini Veronica, De Palo Elio Franco, Grandori Rita, Tagliaro Franco, Santambrogio Carlo

机构信息

Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, 20126, Milan, Italy.

Department of Diagnostics and Public Health, Unit of Forensic Medicine, University of Verona, Policlinico "G.B. Rossi", Piazzale L.A. Scuro 10, 37134, Verona, Italy.

出版信息

Anal Bioanal Chem. 2017 Nov;409(28):6605-6612. doi: 10.1007/s00216-017-0616-z. Epub 2017 Sep 29.

Abstract

Transferrin (Tf) is the major iron-transporting protein in the human body and, for this reason, has been extensively studied in biomedicine. This protein undergoes a complex glycosylation process leading to several glycoforms, some of which are important in the diagnosis of alcohol abuse and of congenital glycosylation defects under the collective name of carbohydrate-deficient transferrin (CDT). Exploiting the Tf ability to bind not only iron but also other ions, specific attention has been devoted to binding activity towards Tb, which was reported to greatly enhance its intrinsic fluorescence upon the interaction with Tf. However, the structural properties of the Tb-Tf complex have not been described so far. In the present work, the formation of the Tf-Tb complex has been investigated by the employment of several biophysical techniques, such as fluorescence resonance energy transfer (FRET), "native" mass spectrometry (MS), and near-UV circular dichroism (CD). Each method allowed the detection of the Tf-Tb complex, yielding a specific signature. The interaction of Tb with Fe-free Tf (apoTf) has been described in terms of stoichiometry, affinity, and structural effects in comparison with Fe. These experiments led to the first direct detection of the Tf-Tb complex by MS, indicating a 1:2 stoichiometry and allowing the investigation of structural effects of metal binding. Either Tb or Fe binding affected protein conformation, inducing structural compaction to a similar extent. Nevertheless, near-UV CD and pH-dependence profiles suggested subtle differences in the coordination of the two metals by Tf side chains. Experimental conditions that promote complex formation have been identified, highlighting the importance of alkaline pH and synergistic ions, such as carbonate. On the basis of these studies, sample pretreatment, separation, and detection conditions of a high-performance liquid chromatographic method for CDT analysis are optimized, achieving relevant increase (by a factor of ∼3) of analytical sensitivity. Graphical abstract Schematic representation of HPLC-separated transferrin glycoforms detected by fluorescence emission of the terbium ions bound to the protein.

摘要

转铁蛋白(Tf)是人体中主要的铁转运蛋白,因此在生物医学领域受到了广泛研究。这种蛋白质经历复杂的糖基化过程,产生多种糖型,其中一些在以碳水化合物缺乏转铁蛋白(CDT)的统称诊断酒精滥用和先天性糖基化缺陷方面具有重要意义。利用Tf不仅能结合铁还能结合其他离子的能力,人们对其与Tb的结合活性给予了特别关注,据报道Tb与Tf相互作用时会极大地增强其固有荧光。然而,迄今为止尚未描述Tb-Tf复合物的结构特性。在本工作中,通过使用多种生物物理技术,如荧光共振能量转移(FRET)、“天然”质谱(MS)和近紫外圆二色性(CD),研究了Tf-Tb复合物的形成。每种方法都能检测到Tf-Tb复合物,产生特定的特征。与铁相比,已从化学计量、亲和力和结构效应方面描述了Tb与无铁Tf(脱铁转铁蛋白)的相互作用。这些实验首次通过质谱直接检测到Tf-Tb复合物,表明其化学计量为1:2,并能研究金属结合的结构效应。Tb或Fe的结合都会影响蛋白质构象,在相似程度上诱导结构紧凑。尽管如此,近紫外CD和pH依赖性图谱表明Tf侧链对两种金属的配位存在细微差异。已确定了促进复合物形成的实验条件,突出了碱性pH和协同离子(如碳酸盐)的重要性。基于这些研究,优化了用于CDT分析的高效液相色谱方法的样品预处理、分离和检测条件,使分析灵敏度有了显著提高(提高了约3倍)。图形摘要 通过与蛋白质结合的铽离子的荧光发射检测到的高效液相色谱分离的转铁蛋白糖型的示意图。

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