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金黄质蛋白组文库:探索金黄色葡萄球菌发病机制。

Aureolib - a proteome signature library: towards an understanding of staphylococcus aureus pathophysiology.

机构信息

Institut für Mikrobiologie, Ernst-Moritz-Arndt-Universität, Greifswald, Germany.

出版信息

PLoS One. 2013 Aug 13;8(8):e70669. doi: 10.1371/journal.pone.0070669. eCollection 2013.

Abstract

Gel-based proteomics is a powerful approach to study the physiology of Staphylococcus aureus under various growth restricting conditions. We analyzed 679 protein spots from a reference 2-dimensional gel of cytosolic proteins of S. aureus COL by mass spectrometry resulting in 521 different proteins. 4,692 time dependent protein synthesis profiles were generated by exposing S. aureus to nine infection-related stress and starvation stimuli (H2O2, diamide, paraquat, NO, fermentation, nitrate respiration, heat shock, puromycin, mupirocin). These expression profiles are stored in an online resource called Aureolib (http://www.aureolib.de). Moreover, information on target genes of 75 regulators and regulatory elements were included in the database. Cross-comparisons of this extensive data collection of protein synthesis profiles using the tools implemented in Aureolib lead to the identification of stress and starvation specific marker proteins. Altogether, 226 protein synthesis profiles showed induction ratios of 2.5-fold or higher under at least one of the tested conditions with 157 protein synthesis profiles specifically induced in response to a single stimulus. The respective proteins might serve as marker proteins for the corresponding stimulus. By contrast, proteins whose synthesis was increased or repressed in response to more than four stimuli are rather exceptional. The only protein that was induced by six stimuli is the universal stress protein SACOL1759. Most strikingly, cluster analyses of synthesis profiles of proteins differentially synthesized under at least one condition revealed only in rare cases a grouping that correlated with known regulon structures. The most prominent examples are the GapR, Rex, and CtsR regulon. In contrast, protein synthesis profiles of proteins belonging to the CodY and σ(B) regulon are widely distributed. In summary, Aureolib is by far the most comprehensive protein expression database for S. aureus and provides an essential tool to decipher more complex adaptation processes in S. aureus during host pathogen interaction.

摘要

基于凝胶的蛋白质组学是一种研究金黄色葡萄球菌在各种生长限制条件下生理的强大方法。我们通过质谱分析了金黄色葡萄球菌 COL 的细胞质蛋白的参考 2 维凝胶中的 679 个蛋白质点,得到了 521 种不同的蛋白质。通过将金黄色葡萄球菌暴露于 9 种与感染相关的应激和饥饿刺激物(H2O2、二酰胺、百草枯、NO、发酵、硝酸盐呼吸、热休克、嘌呤霉素、莫匹罗星),生成了 4692 个随时间变化的蛋白质合成谱。这些表达谱存储在一个名为 Aureolib(http://www.aureolib.de)的在线资源中。此外,数据库中还包含了 75 个调节剂和调节元件的靶基因信息。使用 Aureolib 中实现的工具对这一广泛的蛋白质合成谱数据集进行交叉比较,导致鉴定出应激和饥饿特异性标记蛋白。总的来说,在至少一种测试条件下,有 226 种蛋白质合成谱的诱导比率为 2.5 倍或更高,有 157 种蛋白质合成谱专门对单个刺激物产生诱导。相应的蛋白质可以作为相应刺激物的标记蛋白。相比之下,由于超过四种刺激物而增加或抑制合成的蛋白质则相当罕见。唯一被六种刺激物诱导的蛋白质是普遍应激蛋白 SACOL1759。最引人注目的是,在至少一种条件下差异合成的蛋白质的合成谱聚类分析很少出现与已知调控子结构相关的分组。最突出的例子是 GapR、Rex 和 CtsR 调控子。相比之下,属于 CodY 和 σ(B)调控子的蛋白质的合成谱广泛分布。总的来说,Aureolib 是迄今为止最全面的金黄色葡萄球菌蛋白质表达数据库,为破译金黄色葡萄球菌在宿主病原体相互作用过程中更复杂的适应过程提供了重要工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28b6/3742771/605836c6da15/pone.0070669.g001.jpg

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