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红参皂苷组分-A(RGSF-A)对感染布鲁氏菌的RAW 264.7细胞吞噬作用和细胞内信号传导的影响

The effects of red ginseng saponin fraction-A (RGSF-A) on phagocytosis and intracellular signaling in Brucella abortus infected RAW 264.7 cells.

作者信息

Arayan Lauren Togonon, Simborio Hannah Leah, Reyes Alisha Wehdnesday Bernardo, Hop Huynh Tan, Min WonGi, Lee Hu Jang, Rhee Man Hee, Chang Hong Hee, Kim Suk

机构信息

Institute of Animal Medicine, College of Veterinary Medicine, Gyeongsang National University, Jinju 660-701, Republic of Korea.

College of Veterinary Medicine, Kyungpook National University, Daegu 702-701, Republic of Korea.

出版信息

FEMS Microbiol Lett. 2015 Jun;362(11). doi: 10.1093/femsle/fnv070. Epub 2015 Apr 28.

Abstract

This study indicated that RGSF-A caused a marked reduction in the adherence, internalization and intracellular growth of Brucella abortus in RGSF-A-treated cells. Furthermore, a decline in the intensity of F-actin fluorescence was observed in RGSF-A-treated cells compared with untreated B. abortus-infected cells. In addition, an evaluation of phagocytic signaling proteins by Western blot analysis revealed an apparent reduction of ERK and p38α phosphorylation levels in B. abortus-infected RGSF-A-treated cells compared with the control. Upon intracellular trafficking of the pathogen, a higher number of B. abortus-containing phagosomes colocalized with LAMP-1 in RGSF-A-treated cells compared with control cells. These results strongly suggest that inhibition of B. abortus uptake could be mediated by suppression in the activation of MAPKs signaling proteins phospho-ERK 1/2, and p38 levels. On the other hand, inhibition of intracellular replication results from the enhancement of phagolysosome fusion in host macrophages. This study highlights the phagocytic and intracellular modulating effect of RGSF-A and its potential as an alternative remedy to control B. abortus infection.

摘要

本研究表明,RGSF-A可显著降低经RGSF-A处理的细胞中布鲁氏菌的黏附、内化及细胞内生长。此外,与未处理的布鲁氏菌感染细胞相比,在经RGSF-A处理的细胞中观察到F-肌动蛋白荧光强度下降。另外,通过蛋白质免疫印迹分析对吞噬信号蛋白进行评估发现,与对照相比,在经RGSF-A处理的布鲁氏菌感染细胞中,ERK和p38α的磷酸化水平明显降低。在病原体的细胞内运输过程中,与对照细胞相比,经RGSF-A处理的细胞中更多含布鲁氏菌的吞噬体与溶酶体相关膜蛋白1(LAMP-1)共定位。这些结果强烈表明,对布鲁氏菌摄取的抑制可能是通过抑制丝裂原活化蛋白激酶(MAPK)信号蛋白磷酸化的细胞外调节激酶1/2(phospho-ERK 1/2)和p38水平来介导的。另一方面,细胞内复制的抑制是由于宿主巨噬细胞中吞噬溶酶体融合增强所致。本研究突出了RGSF-A的吞噬和细胞内调节作用及其作为控制布鲁氏菌感染的替代疗法的潜力。

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