Wu Hoi-Ting, Julian Ryan R
Department of Chemistry, University of California, Riverside, California 92521, USA.
Analyst. 2020 Aug 7;145(15):5232-5241. doi: 10.1039/d0an01036g. Epub 2020 Jul 1.
Recent studies have illuminated connections between spontaneous chemical reactions that cause isomerization at specific protein residues and various age-related diseases including cataracts and Alzheimer's. These discoveries provide impetus for better analytical methods to detect and characterize isomerization in proteins, which will enable a more complete understanding of the underlying relationship between these modifications and biology. Herein we employ a two-dimensional approach for identification of peptides isomers that also includes pinpointing of the modified residue. Collision-induced dissociation is used to fragment ions in the first dimension, followed by separation of the fragments with travelling-wave ion mobility. By comparing data obtained from both isomers, differences in either fragment-ion intensities or arrival-time distributions can be used to identify isomeric forms and the specific site of modification within the peptides. Synthetic peptide standards with sequences derived from long-lived proteins in the eye lens and isomerization at serine, aspartic acid, and glutamic acid were examined. Although both dimensions are capable of isomer identification, ion mobility is much better at determining the site of modification. In general, separation of isomeric forms by ion mobility is possible but does not follow predictable trends dictated by sequence or fragment-ion length. In most cases, however, the site of isomerization can be precisely determined.
最近的研究揭示了在特定蛋白质残基处引起异构化的自发化学反应与包括白内障和阿尔茨海默病在内的各种与年龄相关疾病之间的联系。这些发现为更好地检测和表征蛋白质异构化的分析方法提供了动力,这将有助于更全面地理解这些修饰与生物学之间的潜在关系。在此,我们采用二维方法来鉴定肽异构体,该方法还包括确定修饰的残基。在第一维中使用碰撞诱导解离使离子碎片化,然后用行波离子迁移率分离碎片。通过比较从两种异构体获得的数据,碎片离子强度或到达时间分布的差异可用于鉴定肽内的异构体形式和修饰的特定位点。研究了来自眼晶状体中长寿蛋白的序列以及丝氨酸、天冬氨酸和谷氨酸异构化的合成肽标准品。虽然两个维度都能够鉴定异构体,但离子迁移率在确定修饰位点方面要好得多。一般来说,通过离子迁移率分离异构体形式是可能的,但并不遵循由序列或碎片离子长度决定的可预测趋势。然而,在大多数情况下,可以精确确定异构化位点。