Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai, 400005, India.
J Mass Spectrom. 2013 Feb;48(2):193-204. doi: 10.1002/jms.3148.
The behavior of the analyte molecules inside the neutral core of the charged electrospray (ES) droplet is not unambiguously known to date. The possibility of protein conformational change inside the charged ES droplet has been investigated. The ES droplets encapsulating the protein molecules were exposed to the acetic acid vapor in the ionization chamber to absorb the acetic acid vapor. Because of the faster evaporation of water than that of acetic acid, the droplets became enriched with acetic acid and thus altered the solvent environment (e.g. pH and polarity) of the final charged droplets from where the naked charged analytes (proteins) are formed. Thus, the perturbation of the ES droplet solvent environment resulted in the protein conformational change (unfolding) during the short lifespan of the ES droplet and that is reflected by the multimodal charge state distribution in the corresponding mass spectra. Further, the extent of this conformational change inside the ES droplet was found to be related to the structural flexibility of the protein. Although the protein conformational change inside the ES droplet has been driven by using acetic acid vapor in the present study, the results would help in the near future to understand the spontaneity of the conformational change of the analyte on the millisecond timescale of phase transition in the natural way of ES process.
目前,尚不清楚荷电电喷雾(ES)液滴中性核内分析物分子的行为。已经研究了蛋白质在荷电 ES 液滴内构象变化的可能性。将包含蛋白质分子的 ES 液滴暴露于电离室内的乙酸蒸气中以吸收乙酸蒸气。由于水的蒸发速度快于乙酸的蒸发速度,液滴中乙酸的含量增加,从而改变了最终带电荷的液滴的溶剂环境(例如 pH 值和极性),从那里形成裸露的带电荷的分析物(蛋白质)。因此,ES 液滴溶剂环境的扰动导致 ES 液滴短寿命期间的蛋白质构象变化(展开),这反映在相应质谱中多峰电荷状态分布上。此外,还发现 ES 液滴内这种构象变化的程度与蛋白质的结构灵活性有关。尽管在本研究中使用乙酸蒸气驱动了 ES 液滴内的蛋白质构象变化,但这些结果将有助于在不久的将来以 ES 过程的自然方式理解分析物在相变毫秒时间尺度上的构象变化的自发性。