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Experimental determination of translational starts using peptide mass mapping and tandem mass spectrometry within the proteome of Mycobacterium tuberculosis

机译:结核分枝杆菌蛋白质组中使用肽质谱图和串联质谱法对翻译起点的实验确定

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摘要

Identification of protein translation start sites is largely a bioinformatics exercise, with relatively few confirmed by N-terminal sequencing. Translation start site determination is critical for defining both the protein sequence and the upstream DNA which may contain regulatory motifs. It is demonstrated here that translation start sites can be determined during routine protein identification, using MALDI-MS and MS/MS data to select the correct N-terminal sequence from a list of alternatives generated in silico. Applying the method to 13 proteins from Mycobacterium tuberculosis, 11 predicted translational start sites were confirmed, and two reassigned. The authors suggest that these data (be they confirmation or reassignments) are important for the annotation of both this genome and those of organisms with related genes. It was also shown that N-acetylation, reported to be rare in prokaryotes, was present in three of the 13 proteins (23 %), suggesting that in the mycobacteria this modification may be common, and an important regulator of protein function, although more proteins need to be analysed. This method can be performed with little or no additional experimental work during proteomics investigations.
机译:蛋白质翻译起始位点的鉴定主要是一种生物信息学研究,只有很少的N末端测序证实。翻译起始位点的确定对于定义蛋白质序列和可能含有调控基序的上游DNA至关重要。在此证明,可以使用MALDI-MS和MS / MS数据从计算机生成的替代品列表中选择正确的N端序列,从而在常规蛋白质鉴定过程中确定翻译起始位点。将该方法应用于结核分枝杆菌的13种蛋白质,确认了11个预测的翻译起始位点,并重新分配了2个。作者认为,这些数据(无论是确认还是重新分配)对于注释该基因组以及具有相关基因的生物都是重要的。还表明,据报道在原核生物中罕见的N-乙酰化存在于13种蛋白质中的三种中(占23%),这表明在分枝杆菌中这种修饰可能是常见的,并且是蛋白质功能的重要调节剂,尽管更多蛋白质需要进行分析。在蛋白质组学研究过程中,只需很少或不需要额外的实验工作即可执行此方法。

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