基于trizol的蛋白质提取方法制备海洋medaka样品的高质量二维凝胶电泳图谱。

IF 2.1 3区 生物学 Q3 BIOCHEMICAL RESEARCH METHODS
Proteome Science Pub Date : 2020-05-02 eCollection Date: 2020-01-01 DOI:10.1186/s12953-020-00161-9
Celia Sze-Nga Kwok, Kaze King-Yip Lai, Sai-Wo Lam, Kin-Ka Chan, Steven Jing-Liang Xu, Fred Wang-Fat Lee
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引用次数: 5

摘要

背景:海洋medaka是生态毒理学和环境研究中最受欢迎的鱼类模型之一,蛋白质组学研究是了解medaka暴露于不同环境胁迫下的分子反应的有用工具。制备高质量的蛋白质样品是获得高质量二维凝胶电泳(2-DE)蛋白组学分析结果的关键。近年来,基于trizol的蛋白质提取因其在生产高质量2-DE方面的良好性能以及方法的便利性而受到欢迎。方法:采用三种基于Trizol的方法(Trizol法、Aliquot Trizol法和商业清洁试剂盒Trizol法)从海洋medaka样品中提取蛋白质,并产生2-DE谱。对2-DE图谱的质量和提取方法的有效性进行了评价。为了比较,两种常用的蛋白质提取方法(裂解缓冲法和三氯乙酸(TCA)/丙酮沉淀法)也与基于trizol的方法平行应用。结果:与裂解缓冲液法和TCA/丙酮沉淀萃取法相比,三种基于trizol的方法中的任何一种都能获得高质量的海洋medaka 2-DE图谱。此外,在背景清晰度、斑点数量和蛋白质分辨率方面,使用商业清洁试剂盒的Trizol方法产生了最好的2-DE谱。结论:基于trizol的方法比传统的蛋白质提取方法更适合海洋medaka的2-DE分析。改良版的Trizol方法与商业清洁试剂盒被证明可以产生最好的2-DE轮廓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Production of high-quality two-dimensional gel electrophoresis profile for marine medaka samples by using Trizol-based protein extraction approaches.

Production of high-quality two-dimensional gel electrophoresis profile for marine medaka samples by using Trizol-based protein extraction approaches.

Production of high-quality two-dimensional gel electrophoresis profile for marine medaka samples by using Trizol-based protein extraction approaches.

Production of high-quality two-dimensional gel electrophoresis profile for marine medaka samples by using Trizol-based protein extraction approaches.

Background: Marine medaka is among the most popular models of fish species for ecotoxicology and environmental research and proteomic studies are useful tools for understanding the molecular responses of medaka upon exposure to different environmental stressors. The preparation of high-quality protein samples is the key to producing high-quality two-dimensional gel electrophoresis (2-DE) results for proteomic analysis. In recent years, Trizol-based protein extraction has been gaining popularity because of its promising performance in producing high-quality 2-DE as well as the convenience of the method.

Methods: Three Trizol-based approaches (Trizol method, Aliquot Trizol method and Trizol method with a commercial clean-up kit) were used to extract proteins from a marine medaka sample and 2-DE profiles were produced. Quality of the 2-DE profiles and effectiveness of the extraction methods were evaluated. For comparison, two common protein extraction methods (lysis buffer method and trichloroacetic acid (TCA)/acetone precipitation extraction) were also applied in parallel to Trizol-based approaches.

Results: Any of the three Trizol-based approaches produced a high-quality 2-DE profile of marine medaka compared with both lysis buffer method and TCA/acetone precipitation extraction. In addition, Trizol method with a commercial clean-up kit produced the best 2-DE profile in terms of background clarity, number of spots and resolution of proteins.

Conclusions: Trizol-based approaches offered better choices than traditional protein extraction methods for 2-DE analysis of marine medaka. The modified version of Trizol method with a commercial clean-up kit was shown to produce the best 2-DE profile.

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来源期刊
Proteome Science
Proteome Science 生物-生化研究方法
CiteScore
2.90
自引率
0.00%
发文量
17
审稿时长
4.5 months
期刊介绍: Proteome Science is an open access journal publishing research in the area of systems studies. Proteome Science considers manuscripts based on all aspects of functional and structural proteomics, genomics, metabolomics, systems analysis and metabiome analysis. It encourages the submissions of studies that use large-scale or systems analysis of biomolecules in a cellular, organismal and/or environmental context. Studies that describe novel biological or clinical insights as well as methods-focused studies that describe novel methods for the large-scale study of any and all biomolecules in cells and tissues, such as mass spectrometry, protein and nucleic acid microarrays, genomics, next-generation sequencing and computational algorithms and methods are all within the scope of Proteome Science, as are electron topography, structural methods, proteogenomics, chemical proteomics, stem cell proteomics, organelle proteomics, plant and microbial proteomics. In spite of its name, Proteome Science considers all aspects of large-scale and systems studies because ultimately any mechanism that results in genomic and metabolomic changes will affect or be affected by the proteome. To reflect this intrinsic relationship of biological systems, Proteome Science will consider all such articles.
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