Native Ion Mobility Mass Spectrometry: When Gas-Phase Ion Structures Depend on the Electrospray Charging Process

被引:31
作者
Khristenko, Nina [1 ,2 ]
Amato, Jussara [3 ]
Livet, Sandrine [1 ,2 ]
Pagano, Bruno [3 ]
Randazzo, Antonio [3 ]
Gabelica, Valerie [1 ,2 ]
机构
[1] Univ Bordeaux, Lab Acides Nucle Regulat Nat & Artificielle, INSERM, 2 Rue Robert Escarpit, F-33607 Pessac, France
[2] CNRS, ARNA, U1212, UMR5320,IECB, 2 Rue Robert Escarpit, F-33607 Pessac, France
[3] Univ Naples Federico II, Dept Pharm, Via Domen Montesano 49, I-80131 Naples, Italy
基金
欧洲研究理事会;
关键词
Ion mobility; Electrospray mechanisms; Native MS; Nucleic acids; Fundamentals; STATE DISTRIBUTIONS; I-MOTIF; PROTEIN IONS; RICH STRAND; PH CHANGES; DNA; IONIZATION; CONFORMATION; FRAGMENT;
D O I
10.1007/s13361-019-02152-3
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Ion mobility spectrometry (IMS) has become popular to characterize biomolecule folding. Numerous studies have shown that proteins that are folded in solution remain folded in the gas phase, whereas proteins that are unfolded in solution adopt more extended conformations in the gas phase. Here, we discuss how general this tenet is. We studied single-stranded DNAs (human telomeric cytosine-rich sequences with CCCTAA repeats), which fold into an intercalated motif (i-motif) structure in a pH-dependent manner, thanks to the formation of C-H+-C base pairs. As i-motif formation is favored at low ionic strength, we could investigate the ESI-IMS-MS behavior of i-motif structures at pH 5.5 over a wide range of ammonium acetate concentrations (15 to 100mM). The control experiments consisted of either the same sequence at pH 7.5, wherein the sequence is unfolded, or sequence variants that cannot form i-motifs (CTCTAA repeats). The surprising results came from the control experiments. We found that the ionic strength of the solution had a greater effect on the compactness of the gas-phase structures than the solution folding state. This means that electrosprayed ions keep a memory of the charging process, which is influenced by the electrolyte concentration. We discuss these results in light of the analyte partitioning between the droplet interior and the droplet surface, which in turn influences the probability of being ionized via a charged residue-type pathway or a chain extrusion-type pathway.
引用
收藏
页码:1069 / 1081
页数:13
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