Department of Chemistry, University of Toronto, Toronto, ON M5S 3H6, Canada.
J Am Chem Soc. 2010 Nov 17;132(45):16156-64. doi: 10.1021/ja1067405. Epub 2010 Oct 21.
Despite the many successes of mass spectrometry in the analysis of biological samples, the need to better understand the correlation between condensed-phase properties and those of electrospray species remains. In particular, the link between structures in the condensed phase and in the gaseous environment of the mass spectrometer is still elusive. Here, we show that fluorescence resonance energy transfer (FRET) can be used to probe the conformations of gaseous biopolymers which are formed by electrospray ionization (ESI) and manipulated in a quadrupole ion trap mass spectrometer. A rhodamine dye pair suitable for gas-phase FRET is characterized. Both steady state spectra and lifetime measurements are used to monitor energy transfer in a series of dye-labeled polyproline-based peptides. FRET efficiency is explored as a function of peptide chain length and charge state. For the peptide with eight proline repeats, virtually complete energy transfer is observed. For the peptide with 14 proline repeats, energy transfer decreases as the charge state increases, consistent with Coulomb repulsion induced elongation of the peptide backbone. FRET measurements of the longest peptide examined, which has 20 proline repeats, indicates that the peptide adopts a bent configuration. Evidence for multiple conformations present within the ensemble of trapped ions is provided by fluorescence lifetime measurements. Gas-phase FRET measurements promise to be a new route to probe the conformations of large gaseous ions.
尽管质谱在分析生物样本方面取得了许多成功,但仍需要更好地了解凝聚相性质与电喷雾物种之间的相关性。特别是,凝聚相和质谱仪气相环境之间的结构联系仍然难以捉摸。在这里,我们表明可以使用荧光共振能量转移(FRET)来探测通过电喷雾电离(ESI)形成并在四极离子阱质谱仪中操纵的气态生物聚合物的构象。表征了一对适合气相 FRET 的罗丹明染料。使用稳态光谱和寿命测量来监测一系列标记有染料的基于脯氨酸的肽中的能量转移。研究了肽链长度和电荷状态对 FRET 效率的影响。对于具有八个脯氨酸重复的肽,几乎观察到完全的能量转移。对于具有 14 个脯氨酸重复的肽,随着电荷状态的增加,能量转移减少,这与肽主链的库仑排斥诱导伸长一致。对最长的被检查的肽(具有 20 个脯氨酸重复)的 FRET 测量表明,肽采用弯曲构象。通过荧光寿命测量提供了在被捕获离子的整体中存在多种构象的证据。气相 FRET 测量有望成为探测大气体离子构象的新途径。