首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >Homology-Driven Proteomics of Dinoflagellates with Unsequenced Genomes Using MALDI-TOF/TOF and Automated De Novo Sequencing
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Homology-Driven Proteomics of Dinoflagellates with Unsequenced Genomes Using MALDI-TOF/TOF and Automated De Novo Sequencing

机译:使用MALDI-TOF / TOF和自动从头测序技术对不带鞭毛的鞭毛虫的同源基因组进行蛋白质组学研究

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摘要

This study developed a multilayered, gel-based, and underivatized strategy for de novo protein sequence analysis of unsequenced dinoflagellates using a MALDI-TOF/TOF mass spectrometer with the assistance of DeNovo Explorer software. MASCOT was applied as the first layer screen to identify either known or unknown proteins sharing identical peptides presented in a database. Once the confident identifications were removed after searching against the NCBInr database, the remainder was searched against the dinoflagellate expressed sequence tag database. In the last layer, those borderline and nonconfident hits were further subjected to de novo interpretation using DeNovo Explorer software. The de novo sequences passing a reliability filter were subsequently submitted to nonredundant MS-BLAST search. Using this layer identification method, 216 protein spots representing 158 unique proteins out of 220 selected protein spots from Alexandrium tamarense, a dinoflagellate with unsequenced genome, were confidently or tentatively identified by database searching. These proteins were involved in various intracellular physiological activities. This study is the first effort to develop a completely automated approach to identify proteins from unsequenced dinoflagellate databases and establishes a preliminary protein database for various physiological studies of dinoflagellates in the future.
机译:这项研究开发了一种多层的,基于凝胶的,未衍生化的策略,用于在DeNovo Explorer软件的帮助下使用MALDI-TOF / TOF质谱仪对未测序的鞭毛鞭毛藻进行从头蛋白质序列分析。将MASCOT用作第一层筛选,以识别共享数据库中显示的相同肽的已知或未知蛋白。在对NCBInr数据库进行搜索后,一旦删除了可信的标识,就对异鞭毛表达序列标签数据库进行了搜索。在最后一层,使用DeNovo Explorer软件进一步对那些边界性和不确定性的命中点进行了从头解释。随后,将通过可靠性过滤器的从头序列进行非冗余MS-BLAST搜索。使用这种层鉴定方法,通过数据库搜索,有把握地或初步地鉴定了220种选择的蛋白质斑点中的216个蛋白质斑点,其中158个独特的蛋白质来自塔玛亚历山大藻(一种无鞭毛的基因组鞭毛)。这些蛋白质参与各种细胞内生理活动。这项研究是开发一种完全自动化的方法以从未测序的鞭毛藻数据库中鉴定蛋白质的第一步,并为将来对鞭毛藻的各种生理学研究建立了初步的蛋白数据库。

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