Kölbel Knut, Warnke Stephan, Seo Jongcheol, von Helden Gert, Moretti Rocco, Meiler Jens, Pagel Kevin, Sinz Andrea
Department of Pharmaceutical Chemistry and Bioanalytics, Institute for Pharmacy, Martin-Luther-Universit t Halle-Wittenberg W.-Langenbeck-Straße 4, 06120 Halle (Germany).
Chemistry Department Universiteit Antwerpen Campus Groenenborger, Groenenborgerlaan 171 G.V. 416, 2020 Antwer-pen (Belgi).
ChemistrySelect. 2016 Aug 16;1(13):3651-3656. doi: 10.1002/slct.201600934. Epub 2016 Aug 19.
So-called super-secondary structures such as the β-hairpin, studied here, form an intermediate hierarchy between secondary and tertiary structures of proteins. Their sequence-derived 'pure' peptide backbone conformation is combined with 'remote' interstrand or interresidue contacts reminiscent of the 3D-structure of full-length proteins. This renders them ideally suited for studying potential nucleation sites of protein folding reactions as well as intermolecular interactions. But β-hairpins do not merely serve as model systems; their unique structure characteristics warrant a central role in structural studies on their own. In this study we applied photo cross-linking in combination with high-resolution mass spectrometry and computational modeling as well as with ion mobility-mass spectrometry to elucidate these structural properties. Using variants of a known β-hairpin representative, the so-called trpzip peptide and its ligands, we found evidence for a conformational transition of the β-hairpin and its impact on ligand binding.
本文所研究的诸如β-发夹等所谓的超二级结构,构成了蛋白质二级结构和三级结构之间的中间层次。它们由序列衍生而来的“纯”肽主链构象,与类似于全长蛋白质三维结构的“远程”链间或残基间相互作用相结合。这使得它们非常适合用于研究蛋白质折叠反应的潜在成核位点以及分子间相互作用。但β-发夹不仅仅是模型系统;它们独特的结构特征使其自身在结构研究中具有核心作用。在本研究中,我们将光交联与高分辨率质谱、计算建模以及离子淌度-质谱相结合,以阐明这些结构特性。使用一种已知的β-发夹代表性变体,即所谓的色氨酸拉链肽及其配体,我们发现了β-发夹构象转变及其对配体结合影响的证据。