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Proteomic analyses of the photoauto- and diazotrophically grown cyanobacterium Nostoc sp. PCC 73102

机译:蛋白质组学分析光拍和重氮繁华的蓝杆菌SP。 PCC 73102

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The filamentous cyanobacteria of the genus Nostoc are globally distributed, phenotypically complex organisms, capable of cellular differentiation and of forming symbiotic associations with a wide range of plants. To further our understanding of these processes and functions, the proteome of photoautotrophically and diazotrophically grown Nostoc sp. PCC 73102 (N. punctiforme) cells was examined. Extracted proteins were separated into membrane and soluble protein fractions and analysed using two-dimensional gel electrophoresis and matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS). The analysis led to the identification of 82 proteins that could be divided into 12 functional categories. Significantly, 65 of these proteins have not been previously documented in the Nostoc proteome. Many of the proteins identified were readily recognized as housekeeping proteins involved in carbon, nitrogen and energy metabolism, but a number of proteins related to stress, motility, secretion and post-translational modifications were also identified. Ten unclassified proteins were also detected, representing potential novel functions. These proteins were highly expressed, suggesting that they play key roles during photoautotrophic and diazotrophic growth. Nineteen of the proteins expressed under the growth conditions examined contained putative thioredoxin (Trx) targets, a motif that functions in redox regulation via redox equivalent mediators and is known to be significant in a wide range of biological processes. These observations contribute to our understanding of the complex Nostoc life cycle.
机译:Nostoc属的丝状细胞是全球分布的,表型复杂的生物,能够细胞分化和形成与各种植物的共生关联。为了进一步了解这些过程和功能,光学繁琐和重氮繁华的Nostoc SP的蛋白质组。检查PCC 73102(N.PNCTiforme)细胞。将提取的蛋白质分离成膜和可溶性蛋白质级分,并使用二维凝胶电泳和基质辅助激光解吸/电离的飞行质谱(MALDI-TOF MS)分析。分析导致鉴定82种蛋白质可分为12个功能类别。显着性,这些蛋白质中的65例之前未在Nostoc蛋白质组中记录。鉴定的许多蛋白质被容易被认为是参与碳,氮和能量代谢的内政蛋白质,但还鉴定了许多与应激,运动,分泌和翻译后修饰相关的蛋白质。还检测到十个未分类的蛋白质,代表潜在的新功能。这些蛋白质高度表达,表明它们在光营养和无催化生长期间发挥关键作用。在检查的生长条件下表达的蛋白质中含有推定的硫喷妥辛(TRX)靶标的蛋白质,通过氧化还原当量介质在氧化还原调节中起作用的基序,并且已知在广泛的生物过程中具有显着性。这些观察结果有助于我们对复杂的Nostoc生命周期的理解。

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