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Separation techniques for high-molecular-mass proteins

机译:高分子蛋白质的分离技术

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Many high-molecular-mass (HMM) proteins (MWE > 100 kDa) are known to be involved in cytoskeleton, defence and immunity, transcription and translation in higher eukaryotic organisms. Even in the post-genomic era, purification of HMM protein is the first important step to analyze protein composition in a tissue or a cell (proteomics), to determine protein tertiary structure (structural biology), and to investigate protein function (functional genomics). To separate a HMM protein from a protein mixture, ions, chaotropes (urea and thiourea), detergents and protease inhibitors in extraction media and buffer solutions either for liquid chromatography or for gel electrophoresis should be carefully chosen, since HMM proteins tend to be aggregates under denatured condition and their long polypeptide chains are easily attacked by intrinsic protease during separation procedure. Among many liquid chromatography techniques, affinity chromatography either with sequence-specific DNA for transcription factor, or with monoclonal antibody specific for myosin heavy chain has been used for preparative isolation of the respective HMM proteins. Though SDS-PAGE could analyze the size and the quantity of megadalton proteins, the resolution of HMM proteins is relatively poor. A newly developed pulse SDS-PAGE would be able to raise the resolution of HMM proteins compared with the conventional SDS-PAGE. The 2-DE method is not particularly suitable in analyzing HMM proteins larger than 200 kDa. However, a 2-DE method that uses an agarose IFE gel in the first dimension (agarose 2-DE) has been shown to produce significant improvements in 2-DE separation of HMM proteins larger than 150 kDa and up to 500 kDa.
机译:已知许多高分子量(HMM)蛋白(MWE> 100 kDa)与高级真核生物中的细胞骨架,防御和免疫,转录和翻译有关。即使在后基因组时代,纯化HMM蛋白质也是分析组织或细胞中蛋白质组成(蛋白质组学),确定蛋白质三级结构(结构生物学)和研究蛋白质功能(功能基因组学)的重要第一步。 。为了从蛋白混合物中分离出HMM蛋白,应谨慎选择萃取介质和缓冲液(用于液相色谱或凝胶电泳)中的离子,离液剂(尿素和硫脲),去污剂和蛋白酶抑制剂,因为HMM蛋白倾向于在以下条件下聚集在分离过程中,变性的条件及其长多肽链很容易受到内在蛋白酶的攻击。在许多液相色谱技术中,亲和色谱或用于转录因子的序列特异性DNA或对肌球蛋白重链具有特异性的单克隆抗体已用于制备各个HMM蛋白。尽管SDS-PAGE可以分析兆达尔顿蛋白的大小和数量,但HMM蛋白的分辨率相对较差。与传统的SDS-PAGE相比,新开发的脉冲SDS-PAGE将能够提高HMM蛋白的分辨率。 2-DE方法不适用于分析大于200 kDa的HMM蛋白。但是,已显示使用一维琼脂糖IFE凝胶(琼脂糖2-DE)的2-DE方法在大于150 kDa和最大500 kDa的HMM蛋白的2-DE分离方面产生了显着改善。

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