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Targeted Annotation of S-Sulfonylated Peptides by Selective Infrared Multiphoton Dissociation Mass Spectrometry

机译:选择性红外多光子离解质谱法对S-磺酰化肽的靶向注释

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摘要

Protein S-sulfinylation (R-SO2) and S-sulfonylation (R-SO3) are irreversible oxidative post-translational modifications of cysteine residues. Greater than 5% of cysteines are reported to occupy these higher oxidation states, which effectively inactivate the corresponding thiols and alter the electronic and physical properties of modified proteins. Such higher oxidation states are reached after excessive exposure to cellular oxidants, and accumulate across different disease states. Despite widespread and functionally relevant cysteine oxidation across the proteome, there are currently no robust methods to profile higher order cysteine oxidation. Traditional data-dependent liquid chromatography/tandem mass spectrometry (LC/MS/MS) methods generally miss low occupancy modifications in complex analyses. Here, we present a data-independent acquisition (DIA) LC/MS-based approach, leveraging the high IR absorbance of sulfoxides at 10.6 μm, for selective dissociation and discovery of S-sulfonated peptides. Across peptide standards and protein digests, we demonstrate selective infrared multiphoton dissociation (IRMPD) of S-sulfonated peptides in the background of unmodified peptides. This selective DIA IRMPD LC/MS-based approach allows identification and annotation of S-sulfonated peptides across complex mixtures while providing sufficient sequence information to localize the modification site.
机译:蛋白质S-亚磺酰基化(R-SO2 -)和S-磺酰化(R-SO3 -)是半胱氨酸残基不可逆的氧化翻译后修饰。据报道,超过5%的半胱氨酸占据这些较高的氧化态,从而有效地使相应的硫醇失活,并改变了修饰蛋白的电子和物理性质。过度暴露于细胞氧化剂后,会达到这种较高的氧化态,并在不同的疾病状态中累积。尽管整个蛋白质组中广泛存在与功能相关的半胱氨酸氧化,但目前尚无可靠的方法来分析高阶半胱氨酸氧化。传统的依赖数据的液相色谱/串联质谱分析(LC / MS / MS)方法通常在复杂分析中缺少低占用率的修改。在这里,我们提出了一种基于数据独立获取(DIA)LC / MS的方法,利用亚砜在10.6μm处的高红外吸收率,选择性解离和发现S-磺化肽。跨肽标准品和蛋白质消化物,我们证明了S-磺化肽在未修饰肽背景下的选择性红外多光子解离(IRMPD)。这种基于DIA IRMPD LC / MS的选择性方法可在复杂混合物中鉴定和标注S磺化肽,同时提供足够的序列信息以定位修饰位点。

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