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对海洋浮游植物物种尤金藻的 shotgun 蛋白质组学分析,尤金藻在生物地球化学方面具有重要意义。

Shotgun proteomic analysis of Emiliania huxleyi, a marine phytoplankton species of major biogeochemical importance.

机构信息

School of Ocean and Earth Science, National Oceanography Centre, Southampton, University of Southampton, Waterfront Campus, European Way, Southampton, SO14 3ZH, UK.

出版信息

Mar Biotechnol (NY). 2011 Jun;13(3):496-504. doi: 10.1007/s10126-010-9320-0. Epub 2010 Oct 6.

DOI:10.1007/s10126-010-9320-0
PMID:20924652
Abstract

Emiliania huxleyi is a unicellular marine phytoplankton species known to play a significant role in global biogeochemistry. Through the dual roles of photosynthesis and production of calcium carbonate (calcification), carbon is transferred from the atmosphere to ocean sediments. Almost nothing is known about the molecular mechanisms that control calcification, a process that is tightly regulated within the cell. To initiate proteomic studies on this important and phylogenetically remote organism, we have devised efficient protein extraction protocols and developed a bioinformatics pipeline that allows the statistically robust assignment of proteins from MS/MS data using preexisting EST sequences. The bioinformatics tool, termed BUDAPEST (Bioinformatics Utility for Data Analysis of Proteomics using ESTs), is fully automated and was used to search against data generated from three strains. BUDAPEST increased the number of identifications over standard protein database searches from 37 to 99 proteins when data were amalgamated. Proteins involved in diverse cellular processes were uncovered. For example, experimental evidence was obtained for a novel type I polyketide synthase and for various photosystem components. The proteomic and bioinformatic approaches developed in this study are of wider applicability, particularly to the oceanographic community where genomic sequence data for species of interest are currently scarce.

摘要

赫氏海链藻是一种单细胞海洋浮游植物,已知其在全球生物地球化学中发挥着重要作用。通过光合作用和碳酸钙(钙化)的产生这两个作用,碳从大气转移到海洋沉积物中。关于控制钙化的分子机制几乎一无所知,钙化是一个在细胞内受到严格调节的过程。为了在这个重要且系统发育上遥远的生物体上启动蛋白质组学研究,我们设计了高效的蛋白质提取方案,并开发了一个生物信息学管道,该管道允许使用预先存在的 EST 序列,从 MS/MS 数据中进行统计上可靠的蛋白质分配。该生物信息学工具称为 BUDAPEST(使用 EST 进行蛋白质组学数据分析的生物信息学实用程序),是全自动的,并用于搜索来自三个菌株的数据。当数据合并时,BUDAPEST 将标准蛋白质数据库搜索的鉴定数量从 37 个增加到 99 个。发现了涉及各种细胞过程的蛋白质。例如,获得了新型 I 型聚酮合酶和各种光合作用系统组件的实验证据。本研究中开发的蛋白质组学和生物信息学方法具有更广泛的适用性,特别是在海洋学领域,目前这些领域中感兴趣的物种的基因组序列数据稀缺。

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