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In-Depth Analysis of the Thylakoid Membrane Proteome of Arabidopsis thaliana Chloroplasts: New Proteins New Functions and a Plastid Proteome Database

机译:拟南芥叶绿体类囊体膜蛋白质组的深入分析:新蛋白质新功能和质体蛋白质组数据库

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摘要

An extensive analysis of the Arabidopsis thaliana peripheral and integral thylakoid membrane proteome was performed by sequential extractions with salt, detergent, and organic solvents, followed by multidimensional protein separation steps (reverse-phase HPLC and one- and two-dimensional electrophoresis gels), different enzymatic and nonenzymatic protein cleavage techniques, mass spectrometry, and bioinformatics. Altogether, 154 proteins were identified, of which 76 (49%) were α-helical integral membrane proteins. Twenty-seven new proteins without known function but with predicted chloroplast transit peptides were identified, of which 17 (63%) are integral membrane proteins. These new proteins, likely important in thylakoid biogenesis, include two rubredoxins, a potential metallochaperone, and a new DnaJ-like protein. The data were integrated with our analysis of the lumenal-enriched proteome. We identified 83 out of 100 known proteins of the thylakoid localized photosynthetic apparatus, including several new paralogues and some 20 proteins involved in protein insertion, assembly, folding, or proteolysis. An additional 16 proteins are involved in translation, demonstrating that the thylakoid membrane surface is an important site for protein synthesis. The high coverage of the photosynthetic apparatus and the identification of known hydrophobic proteins with low expression levels, such as cpSecE, Ohp1, and Ohp2, indicate an excellent dynamic resolution of the analysis. The sequential extraction process proved very helpful to validate transmembrane prediction. Our data also were cross-correlated to chloroplast subproteome analyses by other laboratories. All data are deposited in a new curated plastid proteome database (PPDB) with multiple search functions (). This PPDB will serve as an expandable resource for the plant community.
机译:通过依次用盐,去污剂和有机溶剂萃取,再进行多维蛋白质分离步骤(反相HPLC和一维和二维电泳凝胶),对拟南芥外周和整体类囊体膜蛋白质组进行了广泛的分析。酶促和非酶促蛋白裂解技术,质谱和生物信息学。总共鉴定出154种蛋白质,其中76种(49%)是α-螺旋整合膜蛋白。鉴定出二十七个没有已知功能但具有预测的叶绿体转运肽的新蛋白,其中17个(63%)是完整的膜蛋白。这些可能在类囊体生物发生中重要的新蛋白质包括两个rubredoxins,一个潜在的金属伴侣和一个新的DnaJ样蛋白质。数据与我们对管腔富集的蛋白质组的分析整合在一起。我们从类囊体定位光合装置的100种已知蛋白质中鉴定出83种,包括几种新的旁系同源物和20种参与蛋白质插入,组装,折叠或蛋白水解的蛋白质。另外16种蛋白质参与翻译,表明类囊体膜表面是蛋白质合成的重要部位。光合作用设备的高覆盖范围以及低表达水平的已知疏水蛋白(例如cpSecE,Ohp1和Ohp2)的鉴定表明该分析具有出色的动态分辨率。顺序提取过程证明对验证跨膜预测非常有帮助。我们的数据还与其他实验室的叶绿体亚蛋白质组分析相互关联。所有数据均存储在具有多个搜索功能的新的质体蛋白质组数据库(PPDB)中。该PPDB将作为工厂社区的可扩展资源。

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