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首页> 外文期刊>Journal of mass spectrometry: JMS >Internal energy distribution of peptides in electrospray ionization: ESI and collision-induced dissociation spectra calculation
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Internal energy distribution of peptides in electrospray ionization: ESI and collision-induced dissociation spectra calculation

机译:电喷雾电离中肽的内部能量分布:ESI和碰撞诱导的解离谱计算

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The internal energy of ions and the timescale play fundamental roles in mass spectrometry. The main objective of this study is to estimate and compare the internal energy distributions of different ions (different nature, degree of freedom 'DOF' and fragmentations) produced in an electrospray source (ESI) of a triple-quadrupole instrument (Quattro I Micromass). These measurements were performed using both the Survival Yield method (as proposed by De Pauw) and the MassKinetics software (kinetic model introduced by Vekey). The internal energy calibration is the preliminary step for ESI and collision-induced dissociation (CID) spectra calculation. meta-Methyl-benzylpyridinium ion and four protonated peptides (YGGFL, LDIFSDF, LDIFSDFR and RLDIFSDF) were produced using an electrospray source. These ions were used as thermometer probe compounds. Cone voltages (V-c) were linearly correlated with the mean internal energy values () carried by desolvated ions. These mean internal energy values seem to be slightly dependent on the size of the studied ion. ESI mass spectra and CID spectra were then simulated using the MassKinetics software to propose an empirical equation for the mean internal energy () versus cone voltage (V-c) for different source temperatures M: = [405 x 10(-6) - 480 x 10(-9) (DOF)] VcT + E-therm(T). In this equation, the E-therm(T) parameter is the mean internal energy due to the source temperature at 0 V-c.
机译:离子的内能和时间尺度在质谱分析中起着基本作用。这项研究的主要目的是估计和比较三重四极杆仪器(Quattro I Micromass)电喷雾源(ESI)中产生的不同离子的内部能量分布(不同的性质,自由度“ DOF”和碎片)。 。这些测量使用生存率方法(由De Pauw提出)和MassKinetics软件(由Vekey引入动力学模型)进行。内部能量校准是ESI和碰撞诱导解离(CID)光谱计算的第一步。使用电喷雾源生产了间甲基甲基苄基吡啶鎓离子和四个质子化的肽(YGGFL,LDIFSDF,LDIFSDFR和RLDIFSDF)。这些离子用作温度计探针化合物。锥电压(V-c)与去溶剂化离子携带的平均内部能量值()线性相关。这些平均内部能量值似乎稍微取决于所研究离子的大小。然后使用MassKinetics软件对ESI质谱和CID谱进行仿真,以针对不同的源温度M提出平均内部能量()与锥体电压(Vc)的经验方程: = [405 x 10(-6)-480 x 10(-9)(DOF)] VcT + E-therm(T)。在该方程式中,E-therm(T)参数是由于源温度为0 V-c时的平均内部能量。

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