Bastin Ashley, Eleftherianos Ioannis
Infection and Innate Immunity Laboratory, Department of Biological Sciences, The George Washington University, Washington DC, 20052, USA.
Curr Res Immunol. 2023 Sep 28;4:100071. doi: 10.1016/j.crimmu.2023.100071. eCollection 2023.
TGF-β signaling pathways are present in diverse animal species, which indicates their evolutionary importance in modulating several conserved biological processes and maintaining host homeostasis by adjusting the activity of innate immune mechanisms. utilizes two related but separable cascades of the canonical TGF-β signaling pathway: The Bone Morphogenetic Protein and Activin branches. Recent studies have produced significant information on the immune role of TGF-β signaling in the fruit fly model during response against certain bacterial pathogens. Results from further investigations have generated novel insights into the role of TGF-β signaling molecules as immune regulators opposing infection against nematode parasites and their mutualistic bacterial partners. This knowledge has revealed a previously unknown layer of the host innate immune system. Here we summarize these recent breakthroughs focusing on the participation of TGF-β signaling factors in various immune processes in relation to infection with potent bacteria and nematode parasites. The presented information provides important clues indicating directions for future research into the design of novel strategies for the effective control of infectious diseases caused by bacterial pathogens and parasitic nematodes.
转化生长因子-β(TGF-β)信号通路存在于多种动物物种中,这表明它们在调节多个保守生物过程以及通过调整先天免疫机制的活性来维持宿主内环境稳定方面具有进化重要性。经典的TGF-β信号通路利用两个相关但可分离的级联反应:骨形态发生蛋白(BMP)分支和激活素分支。最近的研究在果蝇模型中针对某些细菌病原体的应答过程中,产生了关于TGF-β信号通路免疫作用的重要信息。进一步研究的结果对TGF-β信号分子作为免疫调节因子抵抗线虫寄生虫及其共生细菌伙伴感染的作用产生了新的见解。这些知识揭示了宿主先天免疫系统此前未知的层面。在此,我们总结这些近期的突破,重点关注TGF-β信号因子在针对强效细菌和线虫寄生虫感染的各种免疫过程中的参与情况。所呈现的信息提供了重要线索,为未来研究设计有效控制由细菌病原体和寄生线虫引起的传染病的新策略指明了方向。