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Phosphoproteome profiles of the phytopathogenic fungi Alternaria brassicicola and Botrytis cinerea during exponential growth in axenic cultures

机译:在无菌培养物中指数生长期间植物致病真菌alternaria brassicicola和Botrytis cinerea的磷酸化蛋白质组谱

摘要

This study describes the gel-free phosphoproteomic analysis of the phytopathogenic fungi Alternaria brassicicola and Botrytis cinerea grown in vitro under nonlimiting conditions. Using a combination of strong cation exchange and IMAC prior to LC-MS, we identified over 1350 phosphopeptides per fungus representing over 800 phosphoproteins. The preferred phosphorylation sites were found on serine (80%) and threonine (15%), whereas phosphorylated tyrosine residues were found at less than 1% in A. brassicicola and at a slightly higher ratio in B. cinerea (1.5%). Biological processes represented principally among the phoshoproteins were those involved in response and transduction of stimuli as well as in regulation of cellular and metabolic processes. Most known elements of signal transduction were found in the datasets of both fungi. This study also revealed unexpected phosphorylation sites in histidine kinases, a category overrepresented in filamentous ascomycetes compared to yeast.The data have been deposited to the ProteomeXchange database with identifier
机译:这项研究描述了在非限制性条件下体外生长的植物病原性真菌Alternaria braciicicola和Botrytis cinerea的无凝胶磷酸化蛋白质组学分析。在LC-MS之前,使用强阳离子交换和IMAC的组合,我们鉴定出每种真菌超过1350个磷肽,代表800多种磷蛋白。在丝氨酸(> 80%)和苏氨酸(> 15%)上发现了首选的磷酸化位点,而在芸苔假单胞菌中发现磷酸化的酪氨酸残基少于1%,而在灰质芽孢杆菌中发现的磷酸化酪氨酸残基的比例略高(1.5%) 。在磷蛋白中主要代表的生物过程是那些参与应答和转导刺激以及调节细胞和代谢过程的过程。在两种真菌的数据集中都发现了最著名的信号转导元件。这项研究还揭示了组氨酸激酶中意想不到的磷酸化位点,与酵母相比,这是丝状子囊菌中过度表达的类别。数据已存储到带有标识符的ProteomeXchange数据库中

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