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Identification and bioinformatic analysis of the membrane proteins of synechocystis sp. PCC 6803

机译:突囊藻膜蛋白的鉴定和生物信息学分析。 PCC 6803

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Background The membranes of Synechocystis sp. PCC 6803 play a central role in photosynthesis, respiration and other important metabolic pathways. Comprehensive identification of the membrane proteins is of importance for a better understanding of the diverse functions of its unique membrane structures. Up to date, approximately 900 known or predicted membrane proteins, consisting 24.5% of Synechocystis sp. PCC 6803 proteome, have been indentified by large-scale proteomic studies. Results To resolve more membrane proteins on 2-D gels for mass spectrometry identification, we separated integral proteins from membrane associated proteins and collected them as the integral and peripheral fractions, respectively. In total, 95 proteins in the peripheral fraction and 29 proteins in the integral fraction were identified, including the 5 unique proteins that were not identified by any previous studies. Bioinformatic analysis revealed that the identified proteins can be functionally classified into 14 distinct groups according to the cellular functions annotated by Cyanobase, including the two largest groups hypothetical and unknown, and photosynthesis and respiration. Homology analysis indicates that the identified membrane proteins are more conserved than the rest of the proteome. Conclusion The proteins identified in this study combined with other published proteomic data provide the most comprehensive Synechocystis proteome catalog, which will serve as a useful reference for further detailed studies to address protein functions through both traditional gene-by-gene and systems biology approaches.
机译:背景集胞藻的膜。 PCC 6803在光合作用,呼吸作用和其他重要的代谢途径中起着核心作用。全面鉴定膜蛋白对于更好地了解其独特膜结构的多种功能至关重要。迄今为止,约有900种已知或预测的膜蛋白,占Synechocystis sp。的24.5%。 PCC 6803蛋白质组已通过大规模蛋白质组学研究鉴定。结果为了在二维凝胶上分离更多的膜蛋白以进行质谱鉴定,我们从膜相关蛋白中分离出了完整蛋白,并将它们分别作为完整级分和外围级分收集。总共鉴定出外周部分中的95种蛋白质和整数部分中的29种蛋白质,其中包括5种独特的蛋白质,这些蛋白质以前没有被任何研究鉴定。生物信息学分析表明,根据氰基碱基所注释的细胞功能,可以将鉴定出的蛋白质按功能分为14个不同的组,包括假设的和未知的两个最大的组,以及光合作用和呼吸作用。同源性分析表明,鉴定出的膜蛋白比其余的蛋白质组更为保守。结论本研究中鉴定的蛋白质与其他已发表的蛋白质组学数据相结合,提供了最全面的集胞藻蛋白质组目录,这将为进一步详细研究通过传统的逐基因和系统生物学方法解决蛋白质功能提供有用的参考。

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