首页> 美国卫生研究院文献>Journal of Bacteriology >Mycobacterium avium Genes MAV_5138 and MAV_3679 Are Transcriptional Regulators That Play a Role in Invasion of Epithelial Cells in Part by Their Regulation of CipA a Putative Surface Protein Interacting with Host Cell Signaling Pathways
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Mycobacterium avium Genes MAV_5138 and MAV_3679 Are Transcriptional Regulators That Play a Role in Invasion of Epithelial Cells in Part by Their Regulation of CipA a Putative Surface Protein Interacting with Host Cell Signaling Pathways

机译:鸟分枝杆菌基因MAV_5138和MAV_3679是转录调节因子在上皮细胞的侵袭中发挥作用部分是由于它们对CipA的调控CipA是一种与宿主细胞信号通路相互作用的推定表面蛋白

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摘要

The Mycobacterium avium complex (MAC) is an important group of opportunistic pathogens for birds, cattle, swine, and immunosuppressed humans. Although invasion of epithelial cells lining the intestine is the chief point of entry for these organisms, little is known about the mechanisms by which members of the MAC are taken up by these cells. Studies with M. avium have shown that cytoskeletal rearrangement via activation of the small G-protein Cdc42 is involved and that this activation is regulated in part by the M. avium fadD2 gene. The fadD2 gene indirectly regulates a number of genes upon exposure to HEp-2 cells, including transcriptional regulators, membrane proteins, and secreted proteins. Overexpression of two fadD2-associated regulators (MAV_5138 and MAV_3679) led to increased invasion of HEp-2 cells, as well as altered expression of other genes. The protein product of one of the regulated genes, named CipA, has domains that resemble the PXXP motif of human Piccolo proteins, which bind SH3 domains in proteins involved in the scaffold complex formed during cytoskeletal rearrangement. Although CipA was not detected in the cytoplasm of HEp-2 cells exposed to M. avium, the recombinant protein was shown to be potentially expressed on the surface of Mycobacterium smegmatis incubated with HEp-2 cells and, possibly, to interact with human Cdc42. The interaction was then confirmed by showing that CipA activates Cdc42. These results suggest that members of the M. avium complex have a novel mechanism for activating cytoskeletal rearrangement, prompting uptake by host epithelial cells, and that this mechanism is regulated in part by fadD2, MAV_5138, and MAV_3679.
机译:鸟分枝杆菌复合物(MAC)是鸟类,牛,猪和免疫抑制人类的重要机会致病菌。尽管侵袭肠壁上皮细胞是这些生物进入的主要途径,但对于这些细胞吸收MAC成员的机制知之甚少。鸟分枝杆菌的研究表明,通过激活小G蛋白Cdc42引起的细胞骨架重排涉及该激活,并且该激活部分受鸟分枝杆菌fadD2基因的调节。暴露于HEp-2细胞后,fadD2基因间接调节许多基因,包括转录调节因子,膜蛋白和分泌蛋白。两个fadD2相关调节因子(MAV_5138和MAV_3679)的过表达导致HEp-2细胞的侵袭增加以及其他基因的表达改变。一种受调控基因的蛋白产物称为CipA,其结构域类似于人短笛蛋白的PXXP基序,该结构域结合了参与细胞骨架重排过程中形成的支架复合物的蛋白中的SH3结构域。尽管在暴露于鸟分枝杆菌的HEp-2细胞的细胞质中未检测到CipA,但重组蛋白显示可能在与HEp-2细胞孵育的耻垢分枝杆菌表面表达,并可能与人Cdc42相互作用。然后通过显示CipA激活Cdc42确认了相互作用。这些结果表明鸟分枝杆菌复合体的成员具有激活细胞骨架重排,促使宿主上皮细胞摄取的新机制,并且该机制部分受fadD2,MAV_5138和MAV_3679的调节。

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