首页> 外文OA文献 >Nanopods: A New Bacterial Structure and Mechanism for Deployment of Outer Membrane Vesiclesud
【2h】

Nanopods: A New Bacterial Structure and Mechanism for Deployment of Outer Membrane Vesiclesud

机译:纳米脚:一种新的细菌结构和外膜囊泡的部署机制 ud

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Background:udBacterial outer membrane vesicles (OMV) are packets of periplasmic material that, via the proteins and other molecules they contain, project metabolic function into the environment. While OMV production is widespread in proteobacteria, they have been extensively studied only in pathogens, which inhabit fully hydrated environments. However, many (arguably most) bacterial habitats, such as soil, are only partially hydrated. In the latter, water is characteristically distributed as films on soil particles that are, on average thinner, than are typical OMV (ca. ≤10 nm water film vs. 20 to >200 nm OMV;).ududMethodology/Principal Findings:udWe have identified a new bacterial surface structure, termed a "nanopod", that is a conduit for projecting OMV significant distances (e.g., ≥6 µm) from the cell. Electron cryotomography was used to determine nanopod three-dimensional structure, which revealed chains of vesicles within an undulating, tubular element. By using immunoelectron microscopy, proteomics, heterologous expression and mutagenesis, the tubes were determined to be an assembly of a surface layer protein (NpdA), and the interior structures identified as OMV. Specific metabolic function(s) for nanopods produced by Delftia sp. Cs1-4 are not yet known. However, a connection with phenanthrene degradation is a possibility since nanopod formation was induced by growth on phenanthrene. Orthologs of NpdA were identified in three other genera of the Comamonadaceae family, and all were experimentally verified to form nanopods.ududConclusions/Significance:udNanopods are new bacterial organelles, and establish a new paradigm in the mechanisms by which bacteria effect long-distance interactions with their environment. Specifically, they create a pathway through which cells can effectively deploy OMV, and the biological activity these transmit, in a diffusion-independent manner. Nanopods would thus allow environmental bacteria to expand their metabolic sphere of influence in a manner previously unknown for these organisms.
机译:背景:细菌外膜囊泡(OMV)是一包周质物质,它们通过它们所包含的蛋白质和其他分子,将代谢功能投射到环境中。尽管OMV的产生广泛存在于蛋白细菌中,但仅在完全水合环境中的病原体中进行了广泛的研究。但是,许多(可以说是大多数)细菌栖息地(例如土壤)仅被部分水合。在后者中,水通常以膜的形式分布在土壤颗粒上,其平均厚度要比典型的OMV薄(大约≤10 nm水膜,而OMV为20到> 200 nm;)。 ud ud方法/主要发现我们已经鉴定出一种新的细菌表面结构,称为“纳米足”,它是从细胞中投射OMV有效距离(例如,≥6µm)的导管。电子冷冻断层扫描用于确定纳米脚架的三维结构,该结构揭示了起伏的管状元件中的囊泡链。通过使用免疫电子显微镜,蛋白质组学,异源表达和诱变,确定试管为表面层蛋白(NpdA)的集合体,内部结构鉴定为OMV。 Delftia sp。产生的纳米荚的特定代谢功能。 Cs1-4尚不清楚。然而,与菲降解有关的可能性是可能的,因为通过在菲上的生长诱导了纳米荚的形成。 NpdA的直系同源物已在Comamonadaceae家族的其他三个属中鉴定,并全部通过实验验证形成了纳米荚。与环境的远距离互动。具体而言,它们创造了一条途径,细胞可以通过途径独立地扩散,从而有效地部署OMV,并传播这些生物活性。因此,纳米脚将允许环境细菌以对这些生物体以前未知的方式扩展其代谢影响范围。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号