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首页> 外文期刊>BMC Bioinformatics >DBSecSys: a database of Burkholderia mallei secretion systems
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DBSecSys: a database of Burkholderia mallei secretion systems

机译:DBSECSYS:Burkholderia Mallei分泌系统数据库

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Background Bacterial pathogenicity represents a major public health concern worldwide. Secretion systems are a key component of bacterial pathogenicity, as they provide the means for bacterial proteins to penetrate host-cell membranes and insert themselves directly into the host cells’ cytosol. Burkholderia mallei is a Gram-negative bacterium that uses multiple secretion systems during its host infection life cycle. To date, the identities of secretion system proteins for B. mallei are not well known, and their pathogenic mechanisms of action and host factors are largely uncharacterized. Description We present the D atabase of B urkholderia mallei Sec retion Sys tems (DBSecSys), a compilation of manually curated and computationally predicted bacterial secretion system proteins and their host factors. Currently, DBSecSys contains comprehensive experimentally and computationally derived information about B. mallei strain ATCC 23344. The database includes 143 B. mallei proteins associated with five secretion systems, their 1,635 human and murine interacting targets, and the corresponding 2,400 host-B. mallei interactions. The database also includes information about 10 pathogenic mechanisms of action for B. mallei secretion system proteins inferred from the available literature. Additionally, DBSecSys provides details about 42 virulence attenuation experiments for 27 B. mallei secretion system proteins. Users interact with DBSecSys through a Web interface that allows for data browsing, querying, visualizing, and downloading. Conclusions DBSecSys provides a comprehensive, systematically organized resource of experimental and computational data associated with B. mallei secretion systems. It provides the unique ability to study secretion systems not only through characterization of their corresponding pathogen proteins, but also through characterization of their host-interacting partners. The database is available at https://applications.bhsai.org/dbsecsys webcite .
机译:背景细菌致病性代表全球主要的公共卫生问题。分泌系统是细菌致病性的关键组分,因为它们为细菌蛋白质提供了渗透宿主细胞膜并将其自身插入宿主细胞的细胞溶质。 Burkholderia Mallei是一种革兰氏阴性细菌,在其宿主感染过程中使用多种分泌系统。迄今为止,B.Mallei的分泌系统蛋白的身份尚不众名人知,它们的作用和宿主因子的致病机制在很大程度上。描述我们介绍了B Urkholderia Mallei Sec Retion Sys Tems(DBSECsys)的Database,是手动策划和计算预测的细菌分泌系统蛋白及其宿主因子的编制。目前,DBSECSYS包含关于B.Mallei菌株ATCC 23344的全面的实验和计算得出的信息。数据库包括与五种分泌系统,其1,635人和鼠相互作用靶标相关的143 B.B。 Mallei互动。该数据库还包括来自可用文献推断的B.Mallei分泌系统蛋白的10个致病机制的信息。此外,DBSECSYS为27 b.Mallei分泌系统蛋白提供有关42个毒力衰减实验的细节。用户通过Web界面与DBSECSYS进行交互,该Web界面允许数据浏览,查询,可视化和下载。结论DBSECSYS提供了与B.Mallei分泌系统相关的全面,系统组织的实验和计算数据资源。它不仅通过对相应的病原体蛋白表征来研究分泌系统的独特能力,而且还通过其宿主交互伴侣的表征来研究分泌系统。数据库可在https://pplications.bhsai.org/dbsecsys webcite上获得。

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