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c-di-AMP: An Essential Molecule in the Signaling Pathways that Regulate the Viability and Virulence of Gram-Positive Bacteria

机译:c-di-AMP:信号通路中的必需分子,可调节革兰氏阳性细菌的生存力和毒性。

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Signal transduction pathways enable organisms to monitor their external environment and adjust gene regulation to appropriately modify their cellular processes. Second messenger nucleotides including cyclic adenosine monophosphate (c-AMP), cyclic guanosine monophosphate (c-GMP), cyclic di-guanosine monophosphate (c-di-GMP), and cyclic di-adenosine monophosphate (c-di-AMP) play key roles in many signal transduction pathways used by prokaryotes and/or eukaryotes. Among the various second messenger nucleotides molecules, c-di-AMP was discovered recently and has since been shown to be involved in cell growth, survival, and regulation of virulence, primarily within Gram-positive bacteria. The cellular level of c-di-AMP is maintained by a family of c-di-AMP synthesizing enzymes, diadenylate cyclases (DACs), and degradation enzymes, phosphodiesterases (PDEs). Genetic manipulation of DACs and PDEs have demonstrated that alteration of c-di-AMP levels impacts both growth and virulence of microorganisms. Unlike other second messenger molecules, c-di-AMP is essential for growth in several bacterial species as many basic cellular functions are regulated by c-di-AMP including cell wall maintenance, potassium ion homeostasis, DNA damage repair, etc. c-di-AMP follows a typical second messenger signaling pathway, beginning with binding to receptor molecules to subsequent regulation of downstream cellular processes. While c-di-AMP binds to specific proteins that regulate pathways in bacterial cells, c-di-AMP also binds to regulatory RNA molecules that control potassium ion channel expression in Bacillus subtilis . c-di-AMP signaling also occurs in eukaryotes, as bacterially produced c-di-AMP stimulates host immune responses during infection through binding of innate immune surveillance proteins. Due to its existence in diverse microorganisms, its involvement in crucial cellular activities, and its stimulating activity in host immune responses, c-di-AMP signaling pathway has become an attractive antimicrobial drug target and therefore has been the focus of intensive study in several important pathogens.
机译:信号转导途径使生物能够监测其外部环境并调节基因调控以适当地改变其细胞过程。第二信使核苷酸包括环状腺苷单磷酸(c-AMP),环状鸟苷单磷酸(c-GMP),环状二鸟苷单磷酸(c-di-GMP)和环状二腺苷单磷酸(c-di-AMP)在原核生物和/或真核生物使用的许多信号转导途径中发挥重要作用。在各种第二信使核苷酸分子中,最近发现了c-di-AMP,此后已证明其主要参与革兰氏阳性细菌的细胞生长,存活和毒力调节。 c-di-AMP合成酶,二腺苷酸环化酶(DAC)和降解酶,磷酸二酯酶(PDE)的家族可维持c-di-AMP的细胞水平。 DAC和PDE的基因操作已证明c-di-AMP水平的改变会影响微生物的生长和毒力。与其他第二信使分子不同,c-di-AMP对于几种细菌的生长至关重要,因为许多基本细胞功能受c-di-AMP调节,包括细胞壁维持,钾离子稳态,DNA损伤修复等。c-di-AMP -AMP遵循典型的第二信使信号传导途径,从与受体分子的结合开始,以随后调节下游细胞过程。虽然c-di-AMP与调节细菌细胞中通路的特定蛋白质结合,但c-di-AMP也与控制枯草芽孢杆菌中钾离子通道表达的调节RNA分子结合。 c-di-AMP信号转导也发生在真核生物中,因为细菌产生的c-di-AMP通过固有免疫监控蛋白的结合在感染过程中刺激了宿主的免疫反应。由于其在多种微生物中的存在,其参与关键的细胞活动以及其在宿主免疫应答中的刺激活性,因此c-di-AMP信号传导途径已成为有吸引力的抗微生物药物靶标,因此成为数个重要领域中深入研究的重点病原体。

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