首页> 外文期刊>Analytical chemistry >Use of Ultraviolet Photodissociation Coupled with Ion Mobility Mass Spectrometry To Determine Structure and Sequence from Drift Time Selected Peptides and Proteins
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Use of Ultraviolet Photodissociation Coupled with Ion Mobility Mass Spectrometry To Determine Structure and Sequence from Drift Time Selected Peptides and Proteins

机译:紫外光解离与离子淌度质谱联用从漂移时间选择的肽和蛋白质确定结构和序列的应用

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摘要

We demonstrate the capabilities of a laser-coupled ion mobility mass spectrometer for analysis of peptide sequence and structure showing ultraviolet photodissociation (UVPD) spectra of mass and mobility selected ions. A Synapt G2-S mass spectrometer has been modified to allow photointeraction of ions post the mobility cell. For this work, we have employed a single wavelength laser, which irradiates at 266 nm. We present the unique capabilities of this instrument and demonstrate several key features. Irradiation of luteinizing hormone releasing hormone (LHRH), growth hormone releasing hexapeptide (GHRP-6), and TrpCage (sequence NLYIQWLKDGGPSSGRPPPS) yields extensive b- and y-type fragmentation as well as a- and c-type ions. In addition, we observe side chain losses, including the indole group from tryptophan, and imrnonium ions. For negatively charged ions, we show the advantage of using collision-induced dissociation (CID) post-UVPD: radical ions are produced following irradiation, and these fragment with higher efficiency. Further, we have incorporated ion mobility and subsequent drift time gating into the UVPD method allowing the separate analysis of m/z-coincident species, both conformers and multimers. To demonstrate, we selectively dissociate the singly charged dimer or doubly charged monomer of the peptide gramicidin A and conformers of the [M + 5H](5+) form of the peptide melittin. Each mobility selected form has a different "fingerprint" dissociation spectrum, both predominantly containing b and y fragments. Differences in the intensities of various loss channels between the two species were revealed. The smaller conformer of melittin has fewer cleavage sites along the peptide backbone than the larger conformer suggesting considerable structural differences. For gramicidin, a. single laser shot UVPD discriminates between primary photodissociation and subsequent fragmentation of fragments. We also show how this modified instrument facilitates activated electron photodissociation. UVPD-IM-MS analysis serves both as a method for peptide sequencing for peptides of similar (or identical) m/z and a method for optical analysis of mobility separated species.
机译:我们展示了激光耦合离子迁移质谱仪分析肽序列和结构的能力,显示了质量和迁移率选定离子的紫外光解离(UVPD)光谱。 Synapt G2-S质谱仪经过了改进,可以使离子在迁移池中发生光相互作用。对于这项工作,我们采用了单波长激光,其波长为266 nm。我们介绍了该仪器的独特功能并演示了几个关键功能。黄体生成激素释放激素(LHRH),生长激素释放六肽(GHRP-6)和TrpCage(序列NLYIQWLKDGGPSSGRPPPS)的照射产生大量的b型和y型碎片以及a型和c型离子。此外,我们观察到侧链损失,包括色氨酸和吲哚离子的吲哚基。对于带负电的离子,我们展示了在UVPD后使用碰撞诱导解离(CID)的优势:自由基离子是在辐照后产生的,这些碎片具有更高的效率。此外,我们将离子迁移率和随后的漂移时间门控纳入了UVPD方法中,从而可以分别分析构象异构体和多聚体的m / z重合物种。为了证明这一点,我们有选择地解离了肽短杆菌肽A的单电荷二聚体或双电荷单体和肽蜂毒肽的[M + 5H](5+)形式的构象异构体。每种迁移率选择形式均具有不同的“指纹”解离谱,主要包含b和y片段。揭示了两个物种之间各种损失通道的强度差异。与较大的构象体相比,较小的蜂毒肽构象体沿肽主链具有较少的切割位点。对于gramicidin,单次激光照射UVPD可以区分主要的光解离和随后的碎片破碎。我们还展示了这种改进的仪器如何促进活化的电子光解离。 UVPD-IM-MS分析既可作为对相似(或相同)m / z的肽进行肽测序的方法,也可作为对迁移分离物进行光学分析的方法。

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