首页> 外文OA文献 >Membrane vesicles released by a hypervesiculating Escherichia coli Nissle 1917 tolR mutant are highly heterogeneous and show reduced capacity for epithelial cell interaction and entry.
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Membrane vesicles released by a hypervesiculating Escherichia coli Nissle 1917 tolR mutant are highly heterogeneous and show reduced capacity for epithelial cell interaction and entry.

机译:过度泡囊性大肠杆菌Nissle 1917 tolR突变体释放的膜囊泡高度异质,显示上皮细胞相互作用和进入的能力降低。

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摘要

Membrane vesicles (MVs) produced by Gram-negative bacteria are being explored for novel clinical applications due to their ability to deliver active molecules to distant host cells, where they can exert immunomodulatory properties. MVs released by the probiotic Escherichia coli Nissle 1917 (EcN) are good candidates for testing such applications. However, a drawback for such studies is the low level of MV isolation from in vitro culture supernatants, which may be overcome by the use of mutants in cell envelope proteins that yield a hypervesiculation phenotype. Here, we confirm that a tolR mutation in EcN increases MV production, as determined by protein, LPS and fluorescent lipid measurements. Transmission electron microscopy (TEM) of negatively stained MVs did not reveal significant differences with wild type EcN MVs. Conversely, TEM observation after high-pressure freezing followed by freeze substitution of bacterial samples, together with cryo-TEM observation of plunge-frozen hydrated isolated MVs showed considerable structural heterogeneity in the EcN tolR samples. In addition to common one-bilayer vesicles (OMVs) and the recently described double-bilayer vesicles (O-IMVs), other types of MVs were observed. Time-course experiments of MV uptake in Caco-2 cells using rhodamine- and DiO-labelled MVs evidenced that EcN tolR MVs displayed reduced internalization levels compared to the wild-type MVs. The low number of intracellular MVs was due to a lower cell binding capacity of the tolR-derived MVs, rather than a different entry pathway or mechanism. These findings indicate that heterogeneity of MVs from tolR mutants may have a major impact on vesicle functionality, and point to the need for conducting a detailed structural analysis when MVs from hypervesiculating mutants are to be used for biotechnological applications.
机译:由于革兰氏阴性细菌产生的膜囊泡(MVs)能够将活性分子传递到遥远的宿主细胞,并在其中发挥免疫调节作用,因此正在探索用于新型临床应用。益生菌大肠杆菌Nissle 1917(EcN)释放的MVs是测试此类应用的良好候选者。但是,此类研究的一个缺点是无法从体外培养上清液中分离出低水平的MV,这可以通过在细胞包膜蛋白中使用产生超泡表型的突变体来克服。在这里,我们确认EcN中的tolR突变会增加MV的产生,这由蛋白质,LPS和荧光脂质测量确定。负染色MV的透射电镜(TEM)并未显示与野生型EcN MV的显着差异。相反,高压冷冻后的TEM观察,随后细菌样品的冷冻替代,以及急速冷冻的水合水合分离的MV的TEM观察表明,EcN tolR样品具有相当大的结构异质性。除了常见的单双层囊泡(OMV)和最近描述的双层双层囊泡(O-IMV),还观察到其他类型的MV。使用罗丹明和DiO标记的MV在Caco-2细胞中进行MV吸收的时程实验证明,与野生型MV相比,EcN tolR MV显示出降低的内在化水平。细胞内MV的低数量是由于tolR来源的MV较低的细胞结合能力,而不是不同的进入途径或机制。这些发现表明,来自tolR突变体的MV的异质性可能对囊泡功能具有重大影响,并且指出当将来自超囊泡突变体的MV用于生物技术应用时,需要进行详细的结构分析。

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