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Size-to-Charge Dispersion of Collision-Induced Dissociation Product Ions for Enhancement of Structural Information and Product Ion Identification

机译:碰撞诱导的离解产物离子的尺寸-电荷分散,以增强结构信息和产物离子识别

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摘要

Ion mobility is used to disperse product ions formed by collision-induced dissociation (CID) on the basis of charge state and size-to-charge ratio. We previously described an approach for combining CID with ion mobility mass spectrometry (IM-MS) for dispersing fragment ions along charge state specific trend lines (Zinnel, N. F.; Pai, P. J.; Russell, D. H. Anal. Chem. 2012, 84, 3390; Sowell, R. A.; Koeniger, S. L.; Valentine, S. J.; Moon, M. H.; Clemmer, D. E. J. Am. Soc. Mass Spectrom. 2004, 15, 1341; McLean, J. A.; Ruotolo, B. T.; Gillig, K. J.; Russell, D. H. Int. J. Mass Spectrom. 2005, 240, 301), and this approach was used to assign metal ion binding sites for human metallothionein protein MT-2a (Chen, S. H.; Russell, W. K.; Russell, D. H. Anal. Chem. 2013, 85, 3229). Here, we use this approach to distinguish b-type N-terminal fragment ions from both internal fragment ions and y-type C-terminal fragment ions. We also show that in some cases specific secondary structural elements, viz., extended coils or helices, can be obtained for the y-type fragment ions series. The advantage of this approach is that product ion identity can be correlated to gas-phase ion structure, which provides rapid identification of the onset and termination of extended coil structure in peptides.
机译:离子迁移率用于根据电荷状态和大小电荷比来分散由碰撞诱导离解(CID)形成的产物离子。我们之前描述了一种将CID与离子迁移质谱(IM-MS)结合使用的方法,可将碎片离子沿着电荷状态特定趋势线分散(Zinnel,NF; Pai,PJ; Russell,DH Anal.Chem.2012,84,3390;加利福尼亚州索威尔;科恩格尔,SL;瓦伦丁,SJ;蒙恩,MH;克莱姆默,DEJ Am。Soc。Mass Spectrom。2004,15,1341;麦克莱恩,JA; Ruotolo,BT;吉利格,KJ;罗素,DH国际J Mass Spectrom。2005,240,301),并且此方法用于为人类金属硫蛋白MT-2a分配金属离子结合位点(Chen,SH; Russell,WK; Russell,DH Anal。Chem。2013,85,3229) )。在这里,我们使用这种方法来区分b型N末端碎片离子与内部碎片离子和y型C末端碎片离子。我们还表明,在某些情况下,可以为y型碎片离子系列获得特定的二级结构元素,即扩展的线圈或螺旋。这种方法的优势在于,产物离子的身份可以与气相离子结构相关,从而可以快速鉴定肽中延伸的螺旋结构的起始和终止。

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