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A cross-species quantitative proteomic study of salt adaptation in a halotolerant environmental isolate using 15N metabolic labelling

机译:跨物种定量蛋白质组学研究,使用15N代谢标记法对盐渍环境分离物中的盐适应

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摘要

We examine differential protein expression in Euhalothece sp. BAA001, an extremely halotolerant and unsequenced cyanobacterium, under adaptation to low (0% w/v), medium (3% w/v), high (6% w/v) and very high (9% w/v) salt concentrations using cross-species protein identification tools. We combine stable isotope labelling with 1-D SDS-PAGE, and MASCOT protein identification software with MS-driven BLAST searches, to produce an accurate method for protein identification and quantitation. The use of metabolic labelling to improve the confidence in identification of proteins in cross-species proteomics is demonstrated. Three hundred and eighty-three unique proteins were identified, and 72 were deemed to be differentially expressed (average CV for quantitations was 0.10 ± 0.08), belonging to 24 functional groups. Responses to low salt as well as high salt are discussed in terms of adaptation and evidence shows that Euhalothece cells display 'stress' responses in nonsaline conditions as well as higher salt environments.
机译:我们检查Euhalothece sp中的差异蛋白表达。 BAA001,一种极耐盐碱且无序列的蓝细菌,可适应低(0%w / v),中(3%w / v),高(6%w / v)和非常高(9%w / v)的盐浓度使用跨物种的蛋白质鉴定工具。我们将稳定同位素标记与一维SDS-PAGE结合,并将MASCOT蛋白质识别软件与MS驱动的BLAST搜索结合起来,以产生用于蛋白质鉴定和定量的准确方法。证明了使用代谢标记来提高跨物种蛋白质组学中蛋白质鉴定的信心。鉴定了383个独特的蛋白质,其中72个被认为是差异表达的(定量的平均CV为0.10±0.08),属于24个官能团。从适应性的角度讨论了对低盐和高盐的反应,证据表明,Euhalothece细胞在非盐条件和高盐环境下显示出“应激”反应。

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