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采用反相液相色谱与电喷雾电离质谱联用的方法对含硫肽和蛋白质的砷结合行为进行定性和定量表征。

Qualitative and quantitative characterization of the arsenic-binding behaviour of sulfur-containing peptides and proteins by the coupling of reversed phase liquid chromatography to electrospray ionization mass spectrometry.

机构信息

Institute of Analytical Chemistry, Technical University Bergakademie Freiberg, Leipziger Straße 29, D-09599, Freiberg, Germany.

出版信息

J Mass Spectrom. 2012 Aug;47(8):949-61. doi: 10.1002/jms.3025.

Abstract

Phenylarsenic-substituted cysteine-containing peptides and proteins were completely differentiated from their unbound original forms by the coupling of reversed phase liquid chromatography with electrospray ionization mass spectrometry. The analysis of biomolecules possessing structure-stabilizing disulfide bridges after reduction provides new insights into requirements concerning the accessibility of cysteine residues for reducing agents as well as for arsenic compounds in a spatial protein structure. Complementary binding studies performed using direct ESI-MS without chromatographic coupling in different solvent systems demonstrated that more than one binding site were activated for aprotinin and lysozyme in denaturing solvents because of a stronger defolding. From the intensities of the different charge states occurring in the mass spectra as well as from the LC elution behaviour, it can be deduced that the folding state of the arsenic-bound protein species resembles the native, oxidized conformation. In contrast, although the milk protein α-lactalbumin has several disulfide bridges, only one phenylarsenic moiety was bound under strongly denaturing conditions. Because of the charge state distribution in the ESI mass spectra, a conformational change to a molten globule structure is assumed. For the second considered milk protein ß-lactoglobulin, a noncovalent interaction with phenylarsine oxide was detected. In general, smaller apparent binding constants for the condensation reactions of the biomolecules with phenylarsine oxide leading to covalent arsenic-sulfur bindings were determined from direct injection ESI-MS measurements than from LC-ESI-MS coupling. The following order of binding affinities for one phenylarsenic group can be assumed from both ESI-MS and LC-ESI-MS: nonapeptide vasopressin > nonapeptide vasotocin > lysozyme > aprotinin > α-lactalbumin > thioredoxin. Kinetic investigations by LC-ESI-MS yielded a partial reaction order of 2 for vasopressin, Lys and α-lactalbumin and corresponding half-lives of 0.93, 2.56 and 123.5 min, respectively.

摘要

通过反相液相色谱与电喷雾电离质谱联用,完全将取代的含半胱氨酸的苯胂肽和蛋白质从其未结合的原始形式中区分出来。对还原后具有结构稳定二硫键的生物分子的分析为半胱氨酸残基对还原剂以及空间蛋白质结构中砷化合物的可及性要求提供了新的见解。在不同溶剂系统中使用直接 ESI-MS 进行的补充结合研究,无需色谱偶联,表明在变性溶剂中由于更强的解折叠,胰蛋白酶抑制剂和溶菌酶会激活一个以上的结合位点。从质谱中出现的不同电荷状态的强度以及 LC 洗脱行为,可以推断出与砷结合的蛋白质物种的折叠状态类似于天然的氧化构象。相比之下,尽管乳蛋白α-乳白蛋白有几个二硫键,但在强变性条件下仅结合了一个苯胂部分。由于 ESI 质谱中的电荷状态分布,假设发生了无规卷曲到熔融球蛋白结构的构象变化。对于第二个考虑的乳蛋白β-乳球蛋白,检测到与苯胂氧化物的非共价相互作用。通常,直接注射 ESI-MS 测量确定的生物分子与苯胂氧化物缩合反应的表观结合常数比 LC-ESI-MS 偶联小。从 ESI-MS 和 LC-ESI-MS 可以假设一个苯胂基团的结合亲和力顺序为:九肽加压素>九肽缩宫素>溶菌酶>胰蛋白酶抑制剂>α-乳白蛋白>硫氧还蛋白。通过 LC-ESI-MS 进行的动力学研究得出,加压素、Lys 和α-乳白蛋白的部分反应级数为 2,相应的半衰期分别为 0.93、2.56 和 123.5 分钟。

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