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首页> 外文期刊>BMC Biochemistry >Structural analysis of Brucella abortus RicA substitutions that do not impair interaction with human Rab2 GTPase
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Structural analysis of Brucella abortus RicA substitutions that do not impair interaction with human Rab2 GTPase

机译:不影响与人Rab2 GTPase相互作用的布鲁氏菌流产RicA取代的结构分析

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Protein-protein interactions are at the basis of many cellular processes, and they are also involved in the interaction between pathogens and their host(s). Many intracellular pathogenic bacteria translocate proteins called effectors into the cytoplasm of the infected host cell, and these effectors can interact with one or several host protein(s). An effector named RicA was recently reported in Brucella abortus to specifically interact with human Rab2 and to affect intracellular trafficking of this pathogen. In order to identify regions of the RicA protein involved in the interaction with Rab2, RicA was subjected to extensive random mutagenesis using error prone polymerase chain reaction. The resulting allele library was selected by the yeast two-hybrid assay for Rab2-interacting clones that were isolated and sequenced, following the “absence of interference” approach. A tridimensional model of RicA structure was used to position the substitutions that did not affect RicA-Rab2 interaction, giving a “negative image” of the putative interaction region. Since RicA is a bacterial conserved protein, RicA homologs were also tested against Rab2 in a yeast two-hybrid assay, and the C. crescentus homolog of RicA was found to interact with human Rab2. Analysis of the RicA structural model suggested that regions involved in the folding of the “beta helix” or an exposed loop with the IGFP sequence could also be involved in the interaction with Rab2. Extensive mutagenesis of the IGFP loop suggested that loss of interaction with Rab2 was correlated with insolubility of the mutated RicA, showing that “absence of interference” approach also generates surfaces that could be necessary for folding. Extensive analysis of substitutions in RicA unveiled two structural elements on the surface of RicA, the most exposed β-sheet and the IGFP loop, which could be involved in the interaction with Rab2 and protein folding. Our analysis of mutants in the IGFP loop suggests that, at least for some mono-domain proteins such as RicA, protein interaction analysis using allele libraries could be complicated by the dual effect of many substitutions affecting both folding and protein-protein interaction.
机译:蛋白质-蛋白质相互作用是许多细胞过程的基础,它们还参与病原体与其宿主之间的相互作用。许多细胞内致病细菌将称为效应子的蛋白质转运到被感染宿主细胞的细胞质中,这些效应子可以与一种或几种宿主蛋白​​质相互作用。最近在流产布鲁氏菌中报道了一种名为RicA的效应子,它与人Rab2特异性相互作用,并影响这种病原体的细胞内运输。为了鉴定参与与Rab2相互作用的RicA蛋白区域,使用易于出错的聚合酶链反应对RicA进行了广泛的随机诱变。遵循“不存在干扰”的方法,通过酵母双杂交试验针对与Rab2相互作用的克隆进行分离和测序,从而选择得到的等位基因文库。使用RicA结构的三维模型来定位不影响RicA-Rab2相互作用的取代基,从而给出推定相互作用区域的“负像”。由于RicA是一种细菌保守蛋白,因此在酵母双杂交检测中还测试了RicA同源物对Rab2的活性,发现RicA的新月形梭菌同源物与人Rab2相互作用。 RicA结构模型的分析表明,参与“ beta螺旋”折叠或具有IGFP序列的裸露环的区域也可能参与了与Rab2的相互作用。 IGFP环的广泛诱变表明,与Rab2相互作用的丧失与突变的RicA的不溶性相关,这表明“缺乏干扰”方法还产生了折叠可能必需的表面。 RicA中取代的广泛分析揭示了RicA表面上的两个结构元素,即最暴露的β-折叠和IGFP环,这可能与Rab2相互作用和蛋白质折叠有关。我们对IGFP环中突变体的分析表明,至少对于某些单域蛋白(如RicA),使用等位基因库进行蛋白相互作用分析可能会因许多取代同时影响折叠和蛋白-蛋白相互作用的双重作用而变得复杂。

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