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利用二维高效液相色谱-电感耦合等离子体质谱联用技术以及作为第三维度的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,拓展大豆种子金属蛋白分离的分辨率。

Expanding resolution of metalloprotein separations from soybean seeds using 2D-HPLC-ICP-MS and SDS-PAGE as a third dimension.

作者信息

Mataveli Lidiane Raquel Verola, Arruda Marco Aurélio Zezzi

机构信息

Spectrometry, Sample Preparation and Mechanization Group, Institute of Chemistry, University of Campinas - Unicamp, P.O. Box 6154, Campinas, SP 13083-970, Brazil; National Institute of Science and Technology for Bioanalytics, Institute of Chemistry, University of Campinas - Unicamp, P.O. Box 6154, Campinas, SP 13083-970, Brazil.

Spectrometry, Sample Preparation and Mechanization Group, Institute of Chemistry, University of Campinas - Unicamp, P.O. Box 6154, Campinas, SP 13083-970, Brazil; National Institute of Science and Technology for Bioanalytics, Institute of Chemistry, University of Campinas - Unicamp, P.O. Box 6154, Campinas, SP 13083-970, Brazil.

出版信息

J Proteomics. 2014 Jun 2;104:94-103. doi: 10.1016/j.jprot.2014.02.031. Epub 2014 Mar 12.

Abstract

UNLABELLED

This work reports on the use of a three dimensional separation system to enhance metalloprotein information when considering soybean seeds. Separations using size exclusion chromatography (SEC) allowed identification of three metal fractions. Following an anion exchange (AEX) chromatographic separation in the second dimension, the resultant sub-fractions were lyophilized and subjected to a third dimension of separation using a polyacrylamide gel electrophoresis (SDS-PAGE). After the separation, the bands were digested, and, in addition to others, the following proteins, previously associated with metals, were identified: 3-lipoxygenase A chain (soybean) complex with 13(S)-hydroperoxy-9(Z),11(E)-octadecadienoic acid, beta-amylase [Glycine max], seed lipoxygenase-1, lipoxygenase [G. max], seed lipoxygenase-2 (Pisum sativum) and beta-conglycinin.

BIOLOGICAL SIGNIFICANCE

Techniques presenting high resolution are desired due to their capability in resolving great amount of signals (responses) generated from hundreds of proteins generally found in different samples. To the best of our knowledge, this is the first time that bidimensional chromatographic system which allied to another separation dimension is applied for improving protein identification, so that higher number and different proteins were found when comparing 2D dimension with 3D dimension. In fact, this strategy is welcoming in proteomics studies, in order to improve the comprehension of those systems that present large number of proteins. This article is part of a Special Issue entitled: Environmental and structural proteomics.

摘要

未标注

本研究报道了在研究大豆种子时,使用三维分离系统增强金属蛋白信息的情况。通过尺寸排阻色谱(SEC)分离可鉴定出三种金属组分。在第二维进行阴离子交换(AEX)色谱分离后,将所得的亚组分冻干,并使用聚丙烯酰胺凝胶电泳(SDS-PAGE)进行第三维分离。分离后,对条带进行消化,除其他蛋白外,还鉴定出了以下先前与金属相关的蛋白:与13(S)-氢过氧-9(Z),11(E)-十八碳二烯酸复合的3-脂氧合酶A链(大豆)、β-淀粉酶[大豆]、种子脂氧合酶-1、脂氧合酶[大豆]、种子脂氧合酶-2(豌豆)和β-伴大豆球蛋白。

生物学意义

由于高分辨率技术能够解析不同样品中通常存在的数百种蛋白质产生的大量信号(响应),因此人们希望使用这类技术。据我们所知,这是首次将二维色谱系统与另一分离维度相结合用于改进蛋白质鉴定,与二维相比,三维能够发现更多数量和种类不同的蛋白质。实际上,这种策略在蛋白质组学研究中很受欢迎,有助于提高对那些含有大量蛋白质的系统的理解。本文是名为“环境与结构蛋白质组学”的特刊的一部分。

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