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Utility of Cleavable Isotope-Coded Affinity-Tagged Reagents for Quantification of Low-Copy Proteins Induced by Methylprednisolone Using Liquid Chromatography/Tandem Mass Spectrometry

机译:裂解同位素编码亲和标记试剂用于定量使用液相色谱/串联质谱法测定甲基强的松龙诱导的低拷贝蛋白质的效用

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摘要

Gene expression changes underlie important biological and pharmacological responses. Although mRNA expression profiling is routine, quantification of low-abundance proteins, which typically represent key effectors of responses, remains challenging. A novel strategy was developed for sensitive and accurate quantification of low-abundance proteins in highly complex biological matrixes. First, the cysteine specificity of cleavable isotope-coded affinity tags (cICAT) was employed to reduce the complexity of the digested proteome of tissue homogenates and to improve the quantification of low-abundance proteins. Second, cICAT-treated tissue samples were analyzed on a capillary LC coupled to an ion trap MS to screen for the subset of cICAT-peptides, derived from target proteins of interest, that was successfully labeled and retrieved. Third, putatively identified peptides derived from target proteins were synthesized, cICAT-labeled, and used both to optimize multiple reactions monitoring (MRM) analysis and to confirm chromatographic retention time and fragmentation pattern. Finally, batch quantification of target peptides was performed using MRM on a LC/triple-quad MS/MS using ~(12)C-(control) and ~(13)C (experimental)-cICAT-labeled tissue mixtures. The utility of this method was demonstrated by elucidating the time-course of tyrosine aminotransferase induction in the liver of rats following treatment with the corticosteroid methylpred-nisolone (MPL). This approach significantly improved quantitative sensitivity, and the linear range was 10-fold greater than published previously. An additional advantage is that archived samples may be reinterrogated to investigate the regulation of additional targets that become of interest. Stored samples were sucessfully reinterrogated to monitor the induction of ornithine decarboxylase, which is also an MPL-induced protein. To our knowledge, this is the first report of an ICAT-based method that is capable of quantifying low-abundance proteins in highly complex samples, such as tissue homogenates. The approach enables simultaneous quantification of multiple effector proteins induced by biological or pharmacological stimuli, and the processed samples can be interrogated repeatedly as additional targets of interest arise.
机译:基因表达的变化是重要的生物学和药理反应的基础。尽管mRNA表达谱是常规的,但低丰度蛋白(通常代表反应的关键效应子)的定量仍然具有挑战性。针对高复杂度生物基质中低丰度蛋白质的敏感和准确定量,开发了一种新的策略。首先,采用可裂解的同位素编码的亲和标签(cICAT)的半胱氨酸特异性来降低组织匀浆的消化蛋白质组的复杂性,并改善低丰度蛋白质的定量。其次,在与离子阱MS相连的毛细管LC上分析了cICAT处理过的组织样品,以筛选出cICAT肽的子集,该子集源自目标靶蛋白,已成功标记和回收。第三,合成推定鉴定的源自靶蛋白的肽,进行cICAT标记,并用于优化多反应监测(MRM)分析并确认色谱保留时间和片段化模式。最后,使用〜(12)C-(对照)和〜(13)C(实验)-cICAT标记的组织混合物,在LC /三元组MS / MS上使用MRM进行目标肽的批量定量分析。该方法的实用性通过阐明用皮质类固醇甲泼尼龙(MPL)治疗后大鼠肝脏中酪氨酸氨基转移酶诱导的时间过程而得到证明。这种方法显着提高了定量灵敏度,线性范围比以前公布的大了10倍。另一个优点是可以重新询问已归档的样本,以研究感兴趣的其他目标的调控。成功地重新询问了存储的样品,以监测鸟氨酸脱羧酶的诱导,鸟氨酸脱羧酶也是一种MPL诱导的蛋白。据我们所知,这是基于ICAT的方法的首次报道,该方法能够对高度复杂的样品(例如组织匀浆)中的低丰度蛋白质进行定量。该方法能够同时量化由生物或药理刺激诱导的多种效应蛋白,并且当出现其他目标靶标时,可以反复询问经过处理的样品。

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