...
首页> 外文期刊>Analytical chemistry >Absolute Protein Quantification by Mass Spectrometry: Not as Simple as Advertised
【24h】

Absolute Protein Quantification by Mass Spectrometry: Not as Simple as Advertised

机译:质谱法量化:不像广告一样简单

获取原文
获取原文并翻译 | 示例
           

摘要

Stable isotopically labeled (SIL) tryptic peptides, cleavable SIL peptides, and a full-length SIL protein were compared for internal calibration (i.e., as internal calibrators) and external calibration (i.e., as internal standards) when quantifying three forms of unlabeled, human thyroglobulin (Tg) by bottom-up protein analysis. All SIL materials and human proteins were standardized by amino acid analysis to ensure traceability of measurements and allow confident assignment of accuracy. The three forms of human Tg quantified were (1) the primary reference material BCR457-a native protein purified from human thyroids, (2) a commercially available form also purified from human thyroids, and (3) a full-length recombinant form expressed and purified from a human embryonic kidney 293 cell-line. Collectively, the results unequivocally demonstrate the lack of commutability of tryptic and cleavable SIL peptides as internal calibrators across various bottom-up assays (i.e., denaturing/digestion conditions). Further, the results demonstrate the potential during external calibration for surrogate protein calibrators (i.e., recombinant proteins) to produce inaccurate concentration assignments of native protein analytes by bottom-up analysis due to variance in digestion efficiency, which is not alleviated by altering denaturation/digestion stringency and indicates why protein calibrators may not be commutable in bottom-up protein assays. These results have implications regarding the veracity of absolute protein concentration assignments by bottom-up assays using peptide calibrators, as well as protein calibrators, given that absolute accuracy was not universally observed. Nevertheless, these results support the use of recombinant SIL proteins as internal standards over SIL peptides due to their ability to better mimic the digestion of human-derived proteins and mitigate bias due to digestion-based matrix effects that were observed during external calibration.
机译:在量化三种形式的未标记,人类的情况下,比较稳定的同位素标记(SIL)胰蛋白酶蛋白肽,可切割的SIL肽和全长SIL蛋白进行了内部校准(即作为内部校准器)和外部校准(即,作为内部标准)通过自下而上的蛋白质分析甲状腺球蛋白(TG)。通过氨基酸分析标准化所有SIL材料和人类蛋白质,以确保测量的可追溯性并允许自信地分配准确性。量化的三种形式的人Tg为(1)初级参考物质BCR457-一种从人甲状腺溶液中纯化的天然蛋白质,(2)商业上可获得的形式也从人甲状腺溶液中纯化,(3)表达了全长重组形式从人胚胎肾脏293细胞系中纯化。总的来说,结果明确证明患者缺乏胰蛋白酶和可切割的SIL肽作为内部校准剂的可扩展性(即,变性/消化条件)。此外,结果证明了替代蛋白校准剂(即重组蛋白)的外部校准期间的电位,以通过对消化效率的差异产生自下而上的分析来产生天然蛋白分析物的不准确浓度分配,这不会通过改变变性/消化来缓解严格性,并表明为什么蛋白质校准器在自下而上的蛋白质测定中可能无法上易货。这些结果对通过使用肽校准剂的自下而上的测定以及蛋白质校准器来说,这些结果对绝对蛋白质浓度分配的真实性,以及蛋白质校准器,鉴于绝对精度未经普遍地观察到。然而,这些结果支持使用重组SIL蛋白作为基于SIL肽的内标,因为它们能够更好地模拟物质衍生的蛋白质消化和由于在外部校准期间观察到的消化基质效应而减轻偏差。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号