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以K(15)NO3对植物细胞培养物进行代谢标记作为蛋白质和代谢物定量分析的工具。

Metabolic labeling of plant cell cultures with K(15)NO3 as a tool for quantitative analysis of proteins and metabolites.

作者信息

Engelsberger Wolfgang R, Erban Alexander, Kopka Joachim, Schulze Waltraud X

机构信息

Max-Planck Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1 14476, Golm, Germany.

出版信息

Plant Methods. 2006 Sep 4;2:14. doi: 10.1186/1746-4811-2-14.

Abstract

Strategies for robust quantitative comparison between different biological samples are of high importance in experiments that address biological questions beyond the establishment of protein lists. Here, we propose the use of 15N-KNO3 as the only nitrogen source in Arabidopsis cell cultures in order to achieve a metabolically fully labeled cell population. Proteins from such metabolically labeled culture are distinguishable from unlabeled protein populations by a characteristic mass shift that depends on the amino acid composition of the tryptic peptide analyzed. In addition, the metabolically labeled cell extracts are also suitable for comparative quantitative analysis of nitrogen-containing cellular metabolic complement. Protein extracts from unlabeled and from standardized 15N-labeled cells were combined into one sample for joined analytical processing. This has the advantage of (i) reduced experimental variability and (ii) immediate relative quantitation at the level of single extracted peptide and metabolite spectra. Together ease and accuracy of relative quantitation for profiling experiments is substantially improved. The metabolic labeling strategy has been validated by mixtures of protein extracts and metabolite extracts from the same cell cultures in known ratios of labeled to unlabeled extracts (1:1, 1:4, and 4:1). We conclude that saturating metabolic 15N-labeling provides a robust and affordable integrative strategy to answer questions in quantitative proteomics and nitrogen focused metabolomics.

摘要

在解决除建立蛋白质列表之外的生物学问题的实验中,用于不同生物样品之间进行可靠定量比较的策略非常重要。在此,我们建议在拟南芥细胞培养物中使用15N-KNO3作为唯一氮源,以获得代谢完全标记的细胞群体。来自这种代谢标记培养物的蛋白质与未标记的蛋白质群体可通过特征性质量位移区分开来,该质量位移取决于所分析胰蛋白酶肽段的氨基酸组成。此外,代谢标记的细胞提取物也适用于含氮细胞代谢成分的比较定量分析。将来自未标记细胞和标准化15N标记细胞的蛋白质提取物合并到一个样品中进行联合分析处理。这具有以下优点:(i)降低实验变异性;(ii)在单个提取的肽段和代谢物谱水平上立即进行相对定量。相对定量的简便性和准确性在谱分析实验中得到了显著提高。代谢标记策略已通过来自相同细胞培养物的蛋白质提取物和代谢物提取物以已知的标记提取物与未标记提取物比例(1:1、1:4和4:1)的混合物进行了验证。我们得出结论,饱和代谢15N标记提供了一种可靠且经济实惠的综合策略,可用于回答定量蛋白质组学和氮聚焦代谢组学中的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e210/1570346/ca97f1c89616/1746-4811-2-14-1.jpg

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