首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Bacterial lipopolysaccharide induces cytoskeletal rearrangement in small intestinal lamina propria fibroblasts: actin assembly is essential for lipopolysaccharide signaling.
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Bacterial lipopolysaccharide induces cytoskeletal rearrangement in small intestinal lamina propria fibroblasts: actin assembly is essential for lipopolysaccharide signaling.

机译:细菌脂多糖诱导小肠固有层成纤维细胞中的细胞骨架重排:肌动蛋白组装对于脂多糖信号传导至关重要。

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摘要

Cytoskeletal proteins are major components of the cell backbone and regulate cell shape and function. The purpose of this study was to investigate the effect of lipopolysaccharide (LPS) on the dynamics and organization of the cytoskeletal proteins, actin, vimentin, tubulin and vinculin in human small intestinal lamina propria fibroblasts (HSILPF). A noticeable change in the actin architecture was observed after 30 min incubation with LPS with the formation of orthogonal fibers and further accumulation of actin filament at the cell periphery by 2 h. Reorganization of the vimentin network into vimentin bundling was conspicuous at 2 h. With further increase in the time period of LPS exposure, diffused staining of vimentin along with vimentin bundling was observed. Vinculin plaques distributed in the cell body and cell periphery in the control cells rearrange to cell periphery in LPS-treated cells by 30 min of LPS exposure. However, there was no change in the tubulin architecture in HSILPF in response to LPS. LPS increased the F-actin pool in HSILPF in a concentration-dependent manner with no difference in the level of G-actin. A time-dependent study depicted an increase in the G-actin pool at 10 and 20 min of LPS exposure followed by a decrease at further time intervals. The F-actin pool in LPS-treated cells was lower than the control levels at 10 and 20 min of LPS exposure followed by a sharp increase until 120 min and finally returning to the basal level at 140 and 160 min. Further (35)S-methionine incorporation studies suggested a new pool of actin synthesis, whereas the synthesis of other cytoskeletal filaments was not altered. Cytochalasin B, an actin-disrupting agent, severely affected the LPS induced increased percentage of 'S' phase cells and IL-6 synthesis in HSILPF. We conclude that dynamic and orchestrated organization of the cytoskeletal filaments and actin assembly in response to LPS may be a prime requirement for the LPS induced increase in percentage of 'S' phase cells and IL-6 synthesis
机译:细胞骨架蛋白是细胞骨架的主要成分,并调节细胞的形状和功能。这项研究的目的是调查脂多糖(LPS)对人小肠固有层成纤维细胞(HSILPF)中细胞骨架蛋白,肌动蛋白,波形蛋白,微管蛋白和纽蛋白的动力学和组织的影响。与LPS孵育30分钟后,观察到肌动蛋白结构发生了显着变化,形成了正交纤维,肌动蛋白丝在细胞周围进一步聚集了2小时,从而形成了肌纤维。在2小时内,波形蛋白网络重组为波形蛋白束非常明显。随着LPS暴露时间的进一步增加,观察到波形蛋白的弥散染色以及波形蛋白束。在30分钟的LPS暴露下,分布在对照细胞的细胞体和细胞外围的Vinculin斑块重排至LPS处理的细胞中的细胞外围。然而,响应LPS,HSILPF中的微管蛋白结构没有改变。 LPS以浓度依赖的方式增加了HSILPF中的F-肌动蛋白库,而G-肌动蛋白的水平没有差异。一项与时间有关的研究表明,LPS暴露10和20分钟时G-肌动蛋白池增加,随后每隔一段时间就会减少。在LPS处理的细胞中,F-肌动蛋白池在LPS暴露10和20分钟时低于对照水平,然后急剧增加直至120分钟,最后在140和160分钟时恢复至基础水平。进一步的(35)S-蛋氨酸掺入研究表明肌动蛋白合成的新池,而其他细胞骨架丝的合成未改变。细胞松弛素B(一种肌动蛋白破坏剂)严重影响了LPS诱导的HSILPF中'S'期细胞百分率增加和IL-6合成。我们得出结论,响应LPS的细胞骨架丝和肌动蛋白组装的动态和精心组织可能是LPS诱导的'S'期细胞百分比和IL-6合成增加的主要要求

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