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Parallel ion parking of protein mixtures

机译:蛋白质混合物的平行离子停放

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The multiple charging phenomenon resulting from electrospray ionization of proteins, while useful for the ability to make several mass measurements on a single component, can lead to highly complex spectra when mixtures are analyzed, as each component can generate multiple ions of distinct mass-to-charge ratio. Ion/ion protontransfer reactions can overcome this problem by reduction of all components to the +1 charge state, but this typically requires the ability to extend the mass range of the instrument well beyond that available in most commercial instruments. Furthermore, reduction of protein charge to +1 also results in a reduction in detector response. Here it is shown that application of a relatively high amplitude, low-frequency auxiliary ac signal to the end cap electrodes of a 3-D ion trap during an ion/ion reaction can slow the ion/ion reaction rates of ions over a broad m/z range, in a process termed HALF parallel ion parking. Adjustment of the frequency and amplitude of the applied voltage allows the mass range into which the initial ion signal is moved to be controlled, allowing for the simplification of multicomponent mixtures within a mass range that is more commonly available on commercial systems. In addition to decreasing spectral complexity, this is advantageous for mixtures with low-abundance components, as there is less compromise with detector response than in reduction to the +1 charge state. Preliminary evidence also suggests that the ion collision cross section may play an important role in determining which charge states are most significantly inhibited from further ion/ion reactions under a given set of ion parking conditions.
机译:蛋白质电喷雾电离所产生的多重充电现象,尽管有助于对单个成分进行多次质量测量,但在分析混合物时会导致高度复杂的光谱,因为每个成分都可以产生不同质量比的多个离子。充电率。离子/离子质子转移反应可以通过将所有组分还原为+1电荷状态来克服此问题,但这通常需要能够扩展仪器的质量范围,使其远远超出大多数商用仪器所能提供的能力。此外,蛋白质电荷减少到+1也会导致检测器响应降低。在此表明,在离子/离子反应过程中向3-D离子阱的端帽电极施加相对较高幅度的低频辅助ac信号会在较宽的范围内减慢离子的离子/离子反应速度。 / z范围,在称为半平行离子停放的过程中。所施加电压的频率和幅度的调节允许控制初始离子信号进入的质量范围,从而简化了在商业系统上更常见的质量范围内的多组分混合物。除了降低频谱复杂度之外,这对于具有低丰度组分的混合物也是有利的,因为与减少到+1电荷状态相比,检测器响应的折衷程度较小。初步证据还表明,在确定给定的一组离子停车条件下,离子碰撞横截面可能在确定哪些电荷状态受到最明显的抑制而导致进一步的离子/离子反应中起重要作用。

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