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Improving protein extraction and separation methods for investigating the metaproteome of anaerobic benzene communities within sediments

机译:改进蛋白质提取和分离方法以研究沉积物中厌氧苯群落的蛋白质组学

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摘要

BTEX compounds such as benzene are frequent soil and groundwater contaminants that are easily biodegraded under oxic conditions by bacteria. In contrast, benzene is rather recalcitrant under anaerobic conditions. The analysis of anoxic degradation is often hampered by difficult sampling conditions, limited amounts of biomass and interference of matrix compounds with proteomic approaches. In order to improve the procedure for protein extraction we established a scheme consisting of the following steps: dissociation of cells from lava granules, cell lysis by ultrasonication and purification of proteins by phenol extraction. The 2D-gels revealed a resolution of about 240 proteins spots and the spot patterns showed strong matrix dependence, but still differences were detectable between the metaproteomes obtained after growth on benzene and benzoate. Using direct data base search as well as de novo sequencing approaches we were able to identify several proteins. An enoyl-CoA hydratase with cross species homology to Azoarcus evansii, is known to be involved in the anoxic degradation of xenobiotics. Thereby the identification confirmed that this procedure has the capacity to analyse the metaproteome of an anoxic living microbial community.
机译:BTEX化合物(例如苯)是常见的土壤和地下水污染物,在有氧条件下很容易被细菌生物降解。相反,苯在厌氧条件下相当难分解。缺氧降解的分析通常受困于困难的采样条件,有限的生物量以及蛋白质组学方法对基质化合物的干扰。为了改善蛋白质提取的程序,我们建立了一个包括以下步骤的方案:从熔岩颗粒中解离细胞,通过超声处理裂解细胞,并通过苯酚提取纯化蛋白质。 2D凝胶显示了约240个蛋白质斑点的分辨率,斑点模式显示出强烈的基质依赖性,但在苯和苯甲酸酯上生长后获得的元蛋白质组之间仍可检测到差异。使用直接的数据库搜索以及从头测序的方法,我们能够鉴定出几种蛋白质。已知与伊万古猿(Azoarcus evansii)具有跨物种同源性的烯酰辅酶A水合酶与异生物素的缺氧降解有关。因此,鉴定证实了该程序具有分析缺氧的生活微生物群落的元蛋白质组的能力。

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