Fernandez Facundo M, Wysocki Vicki H, Futrell Jean H, Laskin Julia
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia, USA.
J Am Soc Mass Spectrom. 2006 May;17(5):700-9. doi: 10.1016/j.jasms.2006.01.012. Epub 2006 Mar 15.
Surface-induced dissociation (SID) and collision-induced dissociation (CID) are ion activation techniques based on energetic collisions with a surface or gas molecule, respectively. One noticeable difference between CID and SID is that SID does not require a collision gas for ion activation and is, therefore, directly compatible with the high vacuum requirement of Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometers. Eliminating the introduction of collision gas into the ICR cell for collisional activation dramatically shortens the acquisition time for MS/MS experiments, suggesting that SID could be utilized for high-throughput MS/MS studies in FT-ICR MS. We demonstrate for the first time the utility of SID combined with FT-ICR MS for protein identification. Tryptic digests of standard proteins were analyzed using a hybrid 6-tesla FT-ICR mass spectrometer with SID and CID capabilities. SID spectra of mass-selected singly and doubly charged peptides were obtained using a diamond-coated target mounted at the rear trapping plate of the ICR cell. The broad internal energy distribution deposited into the precursor ion following collision with the diamond surface allowed a variety of fragmentation channels to be accessed by SID. Composition and sequence qualifiers produced by SID of tryptic peptides were used to improve the statistical significance of database searches. Protein identification MASCOT scores obtained using SID were comparable or better than scores obtained using sustained off-resonance irradiation collision-induced dissociation (SORI-CID), the conventional ion activation technique in FT-ICR MS.
表面诱导解离(SID)和碰撞诱导解离(CID)是分别基于与表面或气体分子发生高能碰撞的离子活化技术。CID和SID之间一个显著的区别在于,SID在离子活化过程中不需要碰撞气体,因此,它与傅里叶变换离子回旋共振(FT-ICR)质谱仪的高真空要求直接兼容。消除了为碰撞活化而向ICR池中引入碰撞气体的操作,显著缩短了MS/MS实验的采集时间,这表明SID可用于FT-ICR MS中的高通量MS/MS研究。我们首次证明了SID与FT-ICR MS相结合用于蛋白质鉴定的实用性。使用具有SID和CID功能的6特斯拉混合FT-ICR质谱仪分析标准蛋白质的胰蛋白酶消化产物。使用安装在ICR池后捕集板上的金刚石涂层靶材,获得了质量选择的单电荷和双电荷肽段的SID谱图。与金刚石表面碰撞后,前体离子中沉积的广泛内能分布使得SID能够访问多种碎裂通道。胰蛋白酶肽段的SID产生的组成和序列限定符用于提高数据库搜索的统计显著性。使用SID获得的蛋白质鉴定MASCOT分数与使用持续非共振辐照碰撞诱导解离(SORI-CID,FT-ICR MS中的传统离子活化技术)获得的分数相当或更好。