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方案:一种快速、全面且可重复的一步提取方法,用于从单个样品中快速制备极性和半极性代谢物、脂质、蛋白质、淀粉和细胞壁聚合物。

Protocol: a fast, comprehensive and reproducible one-step extraction method for the rapid preparation of polar and semi-polar metabolites, lipids, proteins, starch and cell wall polymers from a single sample.

作者信息

Salem Mohamed A, Jüppner Jessica, Bajdzienko Krzysztof, Giavalisco Patrick

机构信息

Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476 Potsdam-Golm, Germany ; Department of Pharmacognosy, Faculty of Pharmacy, Cairo University, Kasr El-Aini Street, Cairo, 11562 Egypt.

Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476 Potsdam-Golm, Germany.

出版信息

Plant Methods. 2016 Nov 10;12:45. doi: 10.1186/s13007-016-0146-2. eCollection 2016.

Abstract

BACKGROUND

The elucidation of complex biological systems requires integration of multiple molecular parameters. Accordingly, high throughput methods like transcriptomics, proteomics, metabolomics and lipidomics have emerged to provide the tools for successful system-wide investigations. Unfortunately, optimized analysis of different compounds requires specific extraction procedures in combination with specific analytical instrumentation. However, the most efficient extraction protocols often only cover a restricted number of compounds due to the different physico-chemical properties of these biological compounds. Consequently, comprehensive analysis of several molecular components like polar primary metabolites next to lipids or proteins require multiple aliquots to enable the specific extraction procedures required to cover these diverse compound classes. This multi-parallel sample handling of different sample aliquots is therefore not only more sample intensive, it also requires more time and effort to obtain the required extracts.

RESULTS

To circumvent large sample amounts, distributed into several aliquots for the comprehensive extraction of most relevant biological compounds, we developed a simple, robust and reproducible two-phase liquid-liquid extraction protocol. This one-step extraction protocol allows for the analysis of polar-, semi-polar and hydrophobic metabolites, next to insoluble or precipitated compounds, including proteins, starch and plant cell wall components, from a single sample. The method is scalable regarding the used sample amounts but also the employed volumes and can be performed in microcentrifuge tubes, enabling high throughput analysis. The obtained fractions are fully compatible with common analytical methods, including spectroscopic, chromatographic and mass spectrometry-based techniques. To document the utility of the described protocol, we used 25 mg of rosette leaves for the generation of multi-omics data sets, covering lipidomics, metabolomics and proteomics. The obtained data allowed us to measure and annotate more than 200 lipid compounds, 100 primary metabolites, 50 secondary metabolites and 2000 proteins.

CONCLUSIONS

The described extraction protocol provides a simple and straightforward method for the efficient extraction of lipids, metabolites and proteins from minute amounts of a single sample, enabling the targeted but also untargeted high-throughput analyses of diverse biological tissues and samples.

摘要

背景

复杂生物系统的阐释需要整合多个分子参数。因此,转录组学、蛋白质组学、代谢组学和脂质组学等高通量方法应运而生,为成功开展全系统研究提供了工具。不幸的是,对不同化合物进行优化分析需要特定的提取程序,并结合特定的分析仪器。然而,由于这些生物化合物具有不同的物理化学性质,最有效的提取方案通常只能涵盖有限数量的化合物。因此,要对脂质或蛋白质旁边的几种分子成分(如极性初级代谢物)进行全面分析,就需要多个等分试样,以便采用特定的提取程序来涵盖这些不同的化合物类别。因此,对不同样品等分试样进行这种多平行样品处理不仅需要更多的样品,还需要更多的时间和精力来获得所需的提取物。

结果

为了避免将大量样品分成几个等分试样以全面提取最相关的生物化合物,我们开发了一种简单、稳健且可重复的两相液液萃取方案。这种一步提取方案能够从单个样品中分析极性、半极性和疏水性代谢物,以及不溶性或沉淀性化合物,包括蛋白质、淀粉和植物细胞壁成分。该方法在所用样品量以及所用体积方面具有可扩展性,并且可以在微量离心管中进行,从而实现高通量分析。所获得的馏分与包括光谱、色谱和基于质谱的技术在内的常用分析方法完全兼容。为了证明所描述方案的实用性,我们使用25毫克莲座叶生成了多组学数据集,涵盖脂质组学、代谢组学和蛋白质组学。所获得的数据使我们能够测量和注释200多种脂质化合物、100种初级代谢物、50种次级代谢物和2000种蛋白质。

结论

所描述的提取方案提供了一种简单直接的方法,可从微量的单个样品中高效提取脂质、代谢物和蛋白质,从而能够对各种生物组织和样品进行靶向和非靶向的高通量分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3be8/5103428/abac0463e3dd/13007_2016_146_Fig1_HTML.jpg

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