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Gas-Phase Dissociation Pathways of Multiply Charged Peptide Clusters

机译:多重带电肽簇的气相解离途径

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摘要

Numerous studies of cluster formation and dissociation have been conducted to determine properties of matter in the transition from the condensed phase to the gas phase using materials as diverse as atomic nuclei, noble gasses, metal clusters, and amino acids. Here, electrospray ionization is used to extend the study of cluster dissociation to peptides including leucine enkephalin with 7–19 monomer units and 2–5 protons, and somatostatin with 5 monomer units and 4 protons under conditions where its intramolecular disulfide bond is either oxidized or reduced. Evaporation of neutral monomers and charge separation by cluster fission are the competing dissociation pathways of both peptides. The dominant fission product for all leucine enkephalin clusters studied is a proton-bound dimer, presumably due to the high gas-phase stability of this species. The branching ratio of the fission and evaporation processes for leucine enkephalin clusters appears to be determined by the value of z2 for the cluster where z is the charge and n the number of monomer units in the cluster. Clusters with low and high values of z2 dissociate primarily by evaporation and cluster fission respectively, with a sharp transition between dissociation primarily by evaporation and primarily by fission measured at a z2 value of ~0.5. The dependence of the dissociation pathway of a cluster on z2 is similar to the dissociation of atomic nuclei and multiply charged metal clusters indicating that leucine enkephalin peptide clusters exist in a state that is more disordered, and possibly fluid, rather than highly structured in the dissociative transition state. The branching ratio, but not the dissociation pathway of [somatostatin5 + 4H]4+ is altered by the reduction of its internal disulfide bond indicating that monomer conformational flexibility plays a role in peptide cluster dissociation.
机译:已经进行了许多关于团簇形成和离解的研究,以确定物质在从冷凝相到气相的转变中的性质,所使用的材料包括原子核,稀有气体,金属团簇和氨基酸。在这里,电喷雾电离用于将簇解离的研究扩展到包括在分子内二硫键被氧化或被氧化的条件下具有7-19个单体单元和2-5个质子的亮氨酸脑啡肽和具有5个单体单元和4个质子的生长抑素。减少。中性单体的蒸发和簇裂变引起的电荷分离是两种肽竞争的解离途径。研究的所有亮氨酸脑啡肽簇的主要裂变产物是质子结合的二聚体,可能是由于该物种的高气相稳定性。亮氨酸脑啡肽簇的裂变和蒸发过程的分支比似乎由簇的z 2 / n值决定,其中z是电荷,n是簇中单体单元的数目。 z 2 / n值较低和较高的团簇分别主要通过蒸发和团簇裂变解离,主要通过蒸发和主要通过在az 2 / n值为〜0.5。簇的解离路径对z 2 / n的依赖性类似于原子核的解离和多电荷金属簇,表明亮氨酸脑啡肽肽簇以更无序的状态存在,并且可能是流动的,而不是在解离过渡状态下高度结构化。 [somatostatin5 + 4H] 4 + 的分支比但没有解离途径,是由于其内部二硫键的减少而改变的,这表明单体的构象柔性在肽簇的解离中起作用。

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