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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Classifying symbiotic proteins from Bradyrhizobium japonicum into functional groups by proteome analysis of altered gene expression levels
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Classifying symbiotic proteins from Bradyrhizobium japonicum into functional groups by proteome analysis of altered gene expression levels

机译:通过改变基因表达水平的蛋白质组分析,将日本根瘤菌的共生蛋白分为功能组

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摘要

The advent of whole genome sequences has brought with it a vast number of new potential proteins whose function is unknown. We describe an approach to sorting proteins into functional groups by comparative two-dimensional (2-D) gel mapping of cells grown under different physiological conditions. Computerized image analysis selects the proteins whose expression levels change significantly for subsequent identification by mass spectrometry. The protein groupings are further subdivided by directed alteration of their expression levels (e.g., by gene inactivation) and following the changes in the expression pattern of the mutants. We have applied this approach to study the regulation of micro- and anaerobically induced genes including the genes involved in nitrogen fixation in the symbiotic bacterium Bradyrhizobium japonicum. The results obtained show that in addition to the two known regulons controlled by the transcription factors NifA and FixK_2, a third set of proteins may exist in B. japonicum which are induced by anaerobic conditions and are regulated independently. The approach can be applied generally and can be used to build up functional relationship maps of genomes. Protein identification by mass spectrometry was shown to be vital to the interpretation of the expression analysis since 15% of the 2-D gel spots contained more than one protein.
机译:全基因组序列的出现带来了功能未知的大量新的潜在蛋白质。我们描述了通过在不同生理条件下生长的细胞的比较二维(2-D)凝胶作图将蛋白质分类为功能组的方法。计算机图像分析选择表达水平显着变化的蛋白质,以便随后通过质谱鉴定。通过直接改变其表达水平(例如,通过基因失活)并跟随突变体的表达模式的改变,进一步细分蛋白质组。我们已经应用这种方法来研究微和厌氧诱导的基因的调控,包括与共生细菌日本根瘤菌中固氮相关的基因。获得的结果表明,除了两个已知的受转录因子NifA和FixK_2控制的调控因子外,日本血吸虫中还可能存在第三组蛋白质,这些蛋白质是由厌氧条件诱导的,并且可以独立调节。该方法可以普遍应用,并且可以用于建立基因组的功能关系图。由于15%的2-D凝胶斑点包含一种以上的蛋白质,因此通过质谱鉴定蛋白质被证明对表达分析的解释至关重要。

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