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首页> 外文期刊>Journal of proteome research >A coordinated proteomic approach for identifying proteins that interact with the E. Coli Ribosomal protein S12
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A coordinated proteomic approach for identifying proteins that interact with the E. Coli Ribosomal protein S12

机译:蛋白质组学的协同方法,用于鉴定与大肠杆菌核糖体蛋白S12相互作用的蛋白

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The bacterial ribosomal protein S12 contains a universally conserved D88 residue on a loop region thought to be critically involved in translation due to its proximal location to the A site of the 30S subunit. While D88 mutants are lethal this residue has been found to be post-translationally modified to β-methylthioaspartic acid, a post-translational modification (PTM) identified in S12 orthologs from several phylogenetically distinct bacteria. In a previous report focused on characterizing this PTM, our results provided evidence that this conserved loop region might be involved in forming multiple proteins-protein interactions (Strader, M. B.; Costantino, N.; Elkins, C. A.; Chen, C. Y.; Patel, I.; Makusky, A. J.; Choy, J. S.; Court, D. L.; Markey, S. P.; Kowalak, J. A.A proteomic and transcriptomic approach reveals new insight into betamethylthiolation of Escherichia coli ribosomal protein S12.Mol. Cell. Proteomics 2011, 10, M110 005199). To follow-up on this study, the D88 containing loop was probed to identify candidate binders employing a two-step complementary affinity purification strategy. The first involved an endogenously expressed S12 protein containing a C-terminal tag for capturing S12 binding partners. The second strategy utilized a synthetic biotinylated peptide representing the D88 conserved loop region for capturing S12 loop interaction partners. Captured proteins from both approaches were detected by utilizing SDS-PAGE and one-dimensional liquid chromatography-tandem mass spectrometry. The results presented in this report revealed proteins that form direct interactions with the 30S subunit and elucidated which are likely to interact with S12. In addition, we provide evidence that two proteins involved in regulating ribosome and/or mRNA transcript levels under stress conditions, RNase R and Hfq, form direct interactions with the S12 conserved loop, suggesting that it is likely part of a protein binding interface.
机译:细菌核糖体蛋白S12在环区域上包含一个普遍保守的D88残基,由于其近端位于30S亚基的A位点而被认为与翻译有关。尽管D88突变体具有致死性,但已发现该残基被翻译后修饰为β-甲硫天冬氨酸,这是在S12直系同源物中从几种系统发育不同的细菌中鉴定出的翻译后修饰(PTM)。在以前的专注于表征该PTM的报告中,我们的结果提供了证据,表明该保守的环区域可能参与形成多种蛋白质-蛋白质相互作用(Strader,MB; Costantino,N .; Elkins,CA; Chen,CY; Patel,I ; Makusky,AJ; Choy,JS; Court,DL; Markey,SP; Kowalak,JAA蛋白质组学和转录组学方法揭示了对大肠杆菌核糖体蛋白S12的β甲基硫醇化的新见解(Mol。Cell.Proteomics 2011,10,M110 005199)。为了跟踪这项研究,采用两步互补亲和纯化策略对含有D88的环进行了探测,以鉴定候选结合物。第一个涉及内源表达的S12蛋白,该蛋白包含一个C末端标签,用于捕获S12结合伴侣。第二种策略是利用代表D88保守环区域的合成生物素化肽捕获S12环相互作用伴侣。通过使用SDS-PAGE和一维液相色谱-串联质谱检测从这两种方法中捕获的蛋白质。本报告中的结果揭示了与30S亚基形成直接相互作用的蛋白,并阐明了可能与S12相互作用的蛋白。此外,我们提供的证据表明,在应激条件下参与调节核糖体和/或mRNA转录水平的两种蛋白RNase R和Hfq与S12保守环形成直接相互作用,表明它可能是蛋白结合界面的一部分。

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