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QUADRUPOLAR AXIALIZATION FOR IMPROVED CONTROL OF ELECTROSPRAYED PROTEINS IN FTICR MASS SPECTROMETRY

机译:四极轴化用于改进质谱分析中电子喷雾蛋白的控制

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摘要

Quadrupolar axialization is implemented on a high-held electrospray ionization Fourier transform ion cyclotron resonance mass spectrometer, The method is utilized to perform highly efficient remeasurement of small proteins which were not previously amenable to the remeasurement process. For example, 100 consecutive remeasurements of the same population of melittin ions (MW 2845) yield the theoretical 10-fold improvement in signal-to-noise ratio compared to the first measurement. The efficiency of the cooling process is evaluated as a function of excitation radius and ion mass, and the results are compared to instrumental performance prior to the implementation of quadrupolar axialization. The maximum achievable excitation radius for efficient remeasurement is increased from 18% to 52% of the trapped ion cell radius. The application of quadrupolar axialization during the electrospray ion accumulation event results in a factor of 3 improvement in sensitivity when acquiring bovine insulin (MW 5734) spectra under high-resolution conditions. The mass selectivity of the technique is used to isolate a single charge state of horse myoglobin (MW 16 951).
机译:四极轴向化是在高电喷雾电离傅立叶变换离子回旋共振质谱仪上实现的,该方法用于对以前不适合重测过程的小蛋白进行高效重测。例如,与第一次测量相比,对相同的蜂毒素离子种群(MW 2845)进行100次连续重新测量可在理论上将信噪比提高10倍。评估冷却过程的效率与激发半径和离子质量的关系,并在实施四极轴化之前将结果与仪器性能进行比较。有效重新测量的最大可达到激发半径从捕获离子池半径的18%增加到52%。在高分辨率条件下采集牛胰岛素(MW 5734)光谱时,在电喷雾离子累积事件中应用四极轴向化会导致灵敏度提高3倍。该技术的质量选择性用于分离马肌红蛋白的单电荷状态(MW 16 951)。

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