去酰胺
天冬酰胺
化学
异构化
天冬氨酸
生物化学
甲基转移酶
酶
质谱法
色谱法
氨基酸
甲基化
催化作用
DNA
作者
Hongqian Yang,Roman A. Zubarev
标识
DOI:10.1002/elps.201000027
摘要
One of the most frequent modifications in proteins and peptides is the deamidation of asparagine, a spontaneous non-enzymatic reaction leading to a mixture of L,D-succinimidyl, L,D-aspartyl, and L,D-isoaspartyl forms, with L-isoaspartyl dominating. Spontaneous isomerization of L-Asp yields the same products. In vivo, these unusual forms of aspartate are repaired by the protein L-isoaspartyl O-methyltransferase enzyme, with the balance between isomerization and repair affecting the organism physiology. Mass spectrometric analysis of this balance involves isomer separation, iso-Asp/Asp quantification, and iso-Asp site identification. This review highlights the issues associated with these steps and discusses the prospects of high-throughput iso-Asp analysis.
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