Biomolecular Mass Spectrometry and Proteomics Group, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Utrecht, The Netherlands.
J Am Soc Mass Spectrom. 2010 Dec;21(12):1957-65. doi: 10.1016/j.jasms.2010.08.007. Epub 2010 Aug 21.
Here, we explore a de novo sequencing strategy in which we combine Lys-N protein digestion with differential isotopic dimethyl labeling to facilitate the (de novo) identification of multiply charged peptides in ESI-MS, both under CID and ETD conditions. For a large fraction of the Lys-N generated peptides, all primary amines are present at the N-terminal lysine, enabling specific labeling of the N-terminus. Differential derivatization of only the peptide N-terminus in combination with the simultaneous fragmentation of the corresponding isotopologues allows the straightforward distinction of N-terminal fragments from C-terminal and internal fragments. Furthermore, also singly and multiply charged N-terminal fragments can easily be distinguished due to the mass differences of the isotope labeled fragment pairs. As a proof of concept, we applied this approach to proteins isolated from an avocado fruit, and were able to partially de novo sequence and correctly align, with green plant homologues, a previously uncharacterized avocado ascorbate peroxidase.
在这里,我们探索了一种从头测序策略,其中我们将 Lys-N 蛋白消化与差示同位素二甲基标记相结合,以促进 ESI-MS 中多电荷肽的(从头)鉴定,包括 CID 和 ETD 条件下。对于 Lys-N 生成的肽的很大一部分,所有伯胺都存在于 N 末端赖氨酸上,从而能够对 N 末端进行特异性标记。仅对肽 N 末端进行差异衍生化,同时对相应的同位素类似物进行片段化,允许从 C 末端和内部片段中直接区分 N 末端片段。此外,由于同位素标记片段对的质量差异,也可以轻松区分单电荷和多电荷的 N 末端片段。作为概念验证,我们将该方法应用于从鳄梨果实中分离的蛋白质,并能够部分从头测序并与绿色植物同源物正确对齐,鉴定出一个以前未表征的鳄梨抗坏血酸过氧化物酶。