Di Tullio Alessandra, Reale Samantha, De Angelis Francesco
Department of Chemistry, Chemical Engineering and Material, University of L'Aquila, Via Vetoio Coppito II, I-67010 Coppito L'Aquila Italy.
J Mass Spectrom. 2005 Jul;40(7):845-65. doi: 10.1002/jms.896.
A recent major advance in the field of mass spectrometry in the biomolecular sciences is represented by the study of the supramolecular interactions among two or more partners in the gas phase. A great deal of chemistry and most of biochemistry concerns molecular interactions taking place in solution. The electrospray technique, which allows direct sampling from solution, and soft ionization of the solute without deposition into the analyte of large amounts of energy, guarantees in many cases the survival of noncovalent bondings and, hence, the direct analysis of the supramolecular complexes present in the condensed phase. The proper preparation of the solution to be studied and also the expert and accurate setting and use of the instrumental parameters are the prerequisites for gaining results as to the specific interactions between, for instance, a protein conformationally modified by its specific metal ion, eventually, and a ligand molecule. The analysis of the charge state of the protein itself and of the modifications of the complex integrity by activating collisions are also methods for studying the biomolecule-molecule interactions. Accordingly, this new mass spectrometric approach to the supramolecular chemistry, which could be also defined as 'supramolecular mass spectrometry', allows the study of ion-protein, protein-protein, protein-ligand and DNA-drug interactions. Chiral recognition can also be performed in the gas phase, studying by electrospray mass spectrometry the fragmentation of diastereomeric complex ions. Not the least, a deep insight can also be obtained into the formation and nature of inclusion complexes like those formed with crown ethers, cyclodextrins and calixarenes as host molecules. All these topics are treated to a certain extent in this special feature article.
生物分子科学领域质谱分析的一项近期重大进展体现在对气相中两个或多个分子间超分子相互作用的研究上。大量的化学以及大多数生物化学过程涉及在溶液中发生的分子相互作用。电喷雾技术能够从溶液中直接取样,并在不向分析物注入大量能量的情况下使溶质软电离,在许多情况下保证了非共价键的存活,从而能够直接分析凝聚相中存在的超分子复合物。对待研究溶液进行适当的制备,以及对仪器参数进行专业且精确的设置和使用,是获得关于例如最终被其特定金属离子构象修饰的蛋白质与配体分子之间特定相互作用结果的先决条件。分析蛋白质自身的电荷状态以及通过激活碰撞来研究复合物完整性的变化也是研究生物分子间相互作用的方法。因此,这种用于超分子化学的新质谱方法,也可定义为“超分子质谱法”,能够研究离子 - 蛋白质、蛋白质 - 蛋白质、蛋白质 - 配体以及DNA - 药物之间的相互作用。手性识别也可以在气相中进行,通过电喷雾质谱法研究非对映异构络合离子的碎片化。同样重要的是,对于诸如与冠醚、环糊精和杯芳烃等主体分子形成的包合物的形成和性质也能有深入了解。所有这些主题在这篇专题文章中都有一定程度的探讨。