Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford, OX1 3QZ, UK.
J Am Soc Mass Spectrom. 2012 Jul;23(7):1161-8. doi: 10.1007/s13361-012-0393-z. Epub 2012 May 5.
The extent to which proteins in the gas phase retain their condensed-phase structure is a hotly debated issue. Closely related to this is the degree to which the observed charge state reflects protein conformation. Evidence from electron capture dissociation, hydrogen/deuterium exchange, ion mobility, and molecular dynamics shows clearly that there is often a strong correlation between the degree of folding and charge state, with the most compact conformations observed for the lowest charge states. In this article, we address recent controversies surrounding the relationship between charge states and folding, focussing also on the manipulation of charge in solution and its effect on conformation. 'Supercharging' reagents that have been used to effect change in charge state can promote unfolding in the electrospray droplet. However for several protein complexes, supercharging does not appear to perturb the structure in that unfolding is not detected. Consequently, a higher charge state does not necessarily imply unfolding. Whilst the effect of charge manipulation on conformation remains controversial, there is strong evidence that a folded, compact state of a protein can survive in the gas phase, at least on a millisecond timescale. The exact nature of the side-chain packing and secondary structural elements in these compact states, however, remains elusive and prompts further research.
气相中蛋白质保留其凝聚相结构的程度是一个备受争议的问题。与此密切相关的是观察到的电荷状态反映蛋白质构象的程度。来自电子俘获解离、氢/氘交换、离子淌度和分子动力学的证据清楚地表明,折叠程度和电荷状态之间通常存在很强的相关性,最低电荷状态下观察到的最紧凑构象。在本文中,我们讨论了电荷状态和折叠之间关系的最新争议,还重点讨论了在溶液中操纵电荷及其对构象的影响。已经用于改变电荷状态的“超荷试剂”可以促进电喷雾液滴中的解折叠。然而,对于几种蛋白质复合物,超荷似乎不会扰动结构,因为没有检测到解折叠。因此,高电荷状态不一定意味着解折叠。虽然电荷操作对构象的影响仍然存在争议,但有强有力的证据表明,蛋白质的折叠、紧凑状态可以在气相中存活,至少在毫秒时间尺度上是这样。然而,这些紧凑状态中侧链堆积和二级结构元件的确切性质仍然难以捉摸,并促使进一步的研究。