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利用光靶向 SRM 检测含半胱氨酸肽,提高血浆蛋白检测特异性。

Improved detection specificity for plasma proteins by targeting cysteine-containing peptides with photo-SRM.

机构信息

Université Lyon, 43 Boulevard du 11 Novembre 1918, 69622 Lyon, France.

出版信息

Anal Bioanal Chem. 2013 Mar;405(7):2321-31. doi: 10.1007/s00216-012-6603-5. Epub 2013 Jan 17.

DOI:10.1007/s00216-012-6603-5
PMID:23325399
Abstract

Targeted mass spectrometry using selected reaction monitoring (SRM) has emerged as an alternative to immunoassays for protein quantification owing to faster development time and higher multiplexing capability. However, the SRM strategy is faced with the high complexity of peptide mixtures after trypsin digestion of whole plasma or the cellular proteome that most of the time causes contamination, irremediably, by interfering compounds in the transition channels monitored. This problem becomes increasingly acute when the targeted protein is present at a low concentration. In this work, the merit of laser-induced photo-dissociation in the visible region at 473 nm implemented in an hybrid quadrupole linear ion-trap mass spectrometer (photo-SRM) was evaluated for detection specificity of cysteine-containing peptides in a group of plasma proteins after tagging with a dabcyl chromophore. Compared with conventional SRM, photo-SRM chromatograms have improved detection specificity for most of peptides monitored. Comparison of the signals obtained for the best proteotypic peptides in SRM mode and those recorded by photo-SRM of cysteine-containing peptides for the same proteins reveals either increased (up to 10-fold) or similar signal to photo-SRM detection. Finally, photo-SRM has extended response linearity across a calibration plot obtained by diluting human plasma in rat plasma, down to the lowest concentrations. Hence, photo-SRM may advantageously complement conventional SRM in assay of proteins in complex biological matrices.

摘要

基于选择反应监测(SRM)的靶向质谱分析已经成为蛋白质定量的免疫分析的替代方法,因为它具有更快的开发时间和更高的多重检测能力。然而,SRM 策略面临着整个血浆或细胞蛋白质组经胰蛋白酶消化后的肽混合物的高度复杂性,大多数情况下,这会不可避免地导致监测的转换通道中的干扰化合物的污染。当目标蛋白的浓度较低时,这个问题变得更加严重。在这项工作中,评估了在混合四极杆线性离子阱质谱仪(photo-SRM)中在 473nm 可见光区实施的激光诱导光解在带有 dabcyl 生色团的一组血浆蛋白中的含半胱氨酸肽的检测特异性方面的优势。与传统的 SRM 相比,photo-SRM 色谱图提高了大多数监测肽的检测特异性。比较最佳蛋白质特征肽在 SRM 模式下和 photo-SRM 检测时含半胱氨酸肽的信号,发现 photo-SRM 检测的信号要么增加(高达 10 倍),要么相似。最后,photo-SRM 扩展了在用人血浆稀释大鼠血浆获得的校准曲线中的响应线性度,直到最低浓度。因此,photo-SRM 可以在复杂生物基质中的蛋白质分析中有利地补充传统的 SRM。

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