Badman Ethan R, Myung Sunnie, Clemmer David E
Department of Chemistry, Indiana University, Bloomington, Indiana, USA.
J Am Soc Mass Spectrom. 2005 Sep;16(9):1493-1497. doi: 10.1016/j.jasms.2005.04.013.
The folding pathways of gas-phase cytochrome c ions produced by electrospray ionization have been studied by an ion trapping/ion mobility technique that allows conformations to be examined over extended timescales (10 ms to 10 s). The results show that the +9 charge state emerges from solution as a compact structure and then rapidly unfolds into several substantially more open structures, a transition that requires 30-60 ms; over substantially longer timescales (250 ms to 10 s) elongated states appear to refold into an array of folded structures. The new folded states are less compact than those that are apparent during the initial unfolding. Apparently, unfolding to highly open conformations is a key step that must occur before +9 ions can sample more compact states that are stable at longer times.
通过离子阱/离子迁移技术研究了电喷雾电离产生的气相细胞色素c离子的折叠途径,该技术可在较长时间尺度(10毫秒至10秒)上检测构象。结果表明,+9电荷态从溶液中以紧密结构出现,然后迅速展开成几个明显更开放的结构,这一转变需要30 - 60毫秒;在长得多的时间尺度(250毫秒至10秒)上,伸长态似乎重新折叠成一系列折叠结构。新的折叠态不如初始展开过程中出现的那些紧凑。显然,展开成高度开放的构象是一个关键步骤,必须在此之前+9离子才能采样到在更长时间稳定的更紧凑状态。