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首页> 外文期刊>Journal of mass spectrometry: JMS >Proteomic analysis of peptides tagged with dimedone and related probes
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Proteomic analysis of peptides tagged with dimedone and related probes

机译:用二甲酮和相关探针标记的肽的蛋白质组学分析

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Owing to its labile nature, a new role for cysteine sulfenic acid (–SOH) modification has emerged. This oxidative modification modulates protein function by acting as a redox switch during cellular signaling. The identification of proteins that undergo this modification represents a methodological challenge, and its resolution remains a matter of current interest. The development of strategies to chemically modify cysteinyl-containing peptides for liquid chromatography–tandem mass spectrometry (LC-MS/MS) analysis has increased significantly within the past decade. The method of choice to selectively label sulfenic acid is based on the use of dimedone or its derivatives. For these chemical probes to be effective on a proteome-wide level, their reactivity toward –SOH must be high to ensure reaction completion. In addition, the presence of an adduct should not interfere with electrospray ionization, the efficiency of induced dissociation in MS/MS experiments or with the identification of Cysmodified peptides by automated database searching algorithms. Herein, we employ a targeted proteomics approach to study the electrospray ionization and fragmentation effects of different –SOH specific probes and compared them to commonly used alkylating agents. We then extend our study to a whole proteome extract using shotgun proteomic approaches. These experiments enable us to demonstrate that dimedone adducts do not interfere with electrospray by suppressing the ionization nor impede product ion assignment by automated search engines, which detect a + 138 Da increase from unmodified peptides. Collectively, these results suggest that dimedone can be a powerful tool to identify sulfenic acid modifications by high-throughput shotgun proteomics of a whole proteome.
机译:由于其不稳定的性质,半胱氨酸次磺酸(-SOH)修饰的新作用已经出现。这种氧化修饰通过在细胞信号转导期间充当氧化还原开关来调节蛋白质功能。鉴定经过这种修饰的蛋白质代表了方法上的挑战,其拆分仍然是当前关注的问题。在过去十年中,用于液相色谱-串联质谱分析(LC-MS / MS)的化学修饰含半胱氨酰肽的策略的开发已大大增加。选择性标记亚磺酸的选择方法是基于使用二甲酮或其衍生物。为了使这些化学探针在整个蛋白质组范围内均有效,它们对–SOH的反应性必须很高,以确保反应完成。另外,加合物的存在不应干扰电喷雾电离,MS / MS实验中诱导的解离效率或通过自动数据库搜索算法鉴定半胱氨酸修饰的肽。在本文中,我们采用靶向蛋白质组学方法来研究不同–SOH特异性探针的电喷雾电离和裂解效应,并将其与常用的烷基化剂进行比较。然后,我们使用shot弹枪蛋白质组学方法将研究扩展到整个蛋白质组提取物。这些实验使我们能够证明二甲酮加合物通过抑制电离作用也不会干扰电喷雾,也不会阻碍自动搜索引擎的产物离子分配,自动搜索引擎可检测到未经修饰的肽增加138 Da。总的来说,这些结果表明,二甲酮可以是通过整个蛋白质组的高通量shot弹枪蛋白质组学鉴定亚磺酸修饰的强大工具。

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