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Differential Transcriptional Response in Macrophages Infected with Cell Wall Deficient versus Normal Mycobacterium Tuberculosis

机译:感染巨噬细胞与正常结核分枝杆菌感染的巨噬细胞的差异转录反应。

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Host-pathogen interactions determine the outcome following infection by mycobacterium tuberculosis (Mtb). Under adverse circumstances, normal Mtb can form cell-wall deficient (CWD) variants within macrophages, which have been considered an adaptive strategy for facilitating bacterial survival inside macrophages. However, the molecular mechanism by which infection of macrophages with different phenotypic Mtb elicits distinct responses of macrophages is not fully understood. To explore the molecular events triggered upon Mtb infection of macrophages, differential transcriptional responses of RAW264.7 cells infected with two forms of Mtb, CWD-Mtb and normal Mtb, were studied by microarray analysis. Some of the differentially regulated genes were confirmed by RT-qPCR in both RAW264.7 cells and primary macrophages. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway was used to analyze functions of differentially expressed genes. Distinct gene expression patterns were observed between CWD-Mtb and normal Mtb group. Mapt was up-regulated, while NOS2 and IL-11 were down-regulated in CWD-Mtb infected RAW264.7 cells and primary macrophages compared with normal Mtb infected ones. Many deregulated genes were found to be related to macrophages activation, immune response, phagosome maturation, autophagy and lipid metabolism. KEGG analysis showed that the differentially expressed genes were mainly involved in MAPK signaling pathway, nitrogen metabolism, cytokine-cytokine receptor interaction and focal adhesion. Taken together, the present study showed that differential macrophage responses were induced by intracellular CWD-Mtb an normal Mtb infection, which suggested that interactions between macrophages and different phenotypic Mtb are very complex. The results provide evidence for further understanding of pathogenesis of CWD-Mtb and may help in improving strategies to eliminate intracellular CWD-Mtb.
机译:宿主-病原体相互作用决定了结核分枝杆菌(Mtb)感染后的结局。在不利的情况下,正常的Mtb可以在巨噬细胞内形成细胞壁缺陷(CWD)变异体,这已被认为是促进巨噬细胞内部细菌存活的适应策略。但是,尚不完全了解用不同表型Mtb感染巨噬细胞引起巨噬细胞不同应答的分子机制。为了探索由巨噬细胞的Mtb感染引发的分子事件,通过微阵列分析研究了感染两种形式的Mtb(CWD-Mtb和正常Mtb)的RAW264.7细胞的差异转录反应。通过RT-qPCR在RAW264.7细胞和原代巨噬细胞中证实了一些差异调节基因。京都基因与基因组百科全书(KEGG)途径用于分析差异表达基因的功能。在CWD-Mtb和正常Mtb组之间观察到明显的基因表达模式。与正常Mtb感染的RAW264.7细胞和原代巨噬细胞相比,CWD-Mtb感染的RAW264.7细胞和原代巨噬细胞的Mapt上调,而NOS2和IL-11下调。发现许多失调的基因与巨噬细胞活化,免疫反应,吞噬体成熟,自噬和脂质代谢有关。 KEGG分析表明,差异表达的基因主要参与MAPK信号通路,氮代谢,细胞因子与细胞因子受体的相互作用以及粘着斑。综上所述,本研究表明,胞内CWD-Mtb(一种正常的Mtb感染)诱导了不同的巨噬细胞应答,这表明巨噬细胞和不同表型Mtb之间的相互作用非常复杂。结果为进一步了解CWD-Mtb的发病机理提供了证据,并可能有助于改善消除细胞内CWD-Mtb的策略。

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