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The regulation of dendritic cell function by calcium-signaling and its inhibition by microbial pathogens.

机译:通过钙信号传导调节树突状细胞功能及其微生物病原菌的抑制作用。

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Dendritic cells (DC) are the sentinels of the immune system, linking innate with adaptive responses. The functional responses of DC are subject to complex regulation and serve as targets for pathogens. Ca2+-mediated signal transduction pathways serve a central regulatory role in DC responses to diverse antigens, including TLR ligands, intact bacteria, and microbial toxins. This review summarizes the major mechanisms of Ca2+-signaling that DC utilize to regulate maturation and antigen presentation, including a Ca2+-calmodulin (CaM)-CaM kinase II pathway that is localized to phagosomes and is targeted by the human intracellular pathogen, Mycobacterium tuberculosis. Restoration of functional Ca2+ signaling in DC may provide a novel mechanism to enhance therapy and promote vaccine efficacy to infectious diseases, including tuberculosis.
机译:树突状细胞(DC)是免疫系统的哨兵,与适应性反应连接。 DC的功能反应受到复杂调节的影响,并用作病原体的靶标。 CA2 +介导的信号转导途径在DC响应中用于多种抗原的中央调节作用,包括TLR配体,完整的细菌和微生物毒素。 该综述总结了CA2 + - 股票的主要机制,即DC利用调节成熟和抗原呈递,包括局部化为吞噬物质的Ca2 + -calmodulin(Cam)-Cam激酶II途径,并由人细胞内病原体,结核病靶向。 在DC中恢复功能CA2 +信号传导可以提供一种新的机制来增强治疗,促进疫苗疗效,包括结核病,包括肺结核。

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