Division of Infection & Immunity, School of Medicine, Cardiff University, UK.
Systems Immunity University Research Institute, Cardiff University, UK.
FEBS Lett. 2022 Mar;596(5):567-588. doi: 10.1002/1873-3468.14201. Epub 2021 Oct 15.
Unravelling the molecular mechanisms that account for functional pleiotropy is a major challenge for researchers in cytokine biology. Cytokine-receptor cross-reactivity and shared signalling pathways are considered primary drivers of cytokine pleiotropy. However, reports epitomized by studies of Jak-STAT cytokine signalling identify interesting biochemical and epigenetic determinants of transcription factor regulation that affect the delivery of signal-dependent cytokine responses. Here, a regulatory interplay between STAT transcription factors and their convergence to specific genomic enhancers support the fine-tuning of cytokine responses controlling host immunity, functional identity, and tissue homeostasis and repair. In this review, we provide an overview of the signalling networks that shape the way cells sense and interpret cytokine cues. With an emphasis on the biology of interleukin-6, we highlight the importance of these mechanisms to both physiological processes and pathophysiological outcomes.
解析细胞因子生物学研究人员面临的主要挑战是阐明导致功能多样性的分子机制。细胞因子-受体交叉反应和共享信号通路被认为是细胞因子多样性的主要驱动因素。然而,Jak-STAT 细胞因子信号转导研究的报告确定了转录因子调节的有趣生化和表观遗传决定因素,这些因素会影响信号依赖性细胞因子反应的传递。在这里,STAT 转录因子之间的调控相互作用及其汇聚到特定的基因组增强子上,支持了对控制宿主免疫、功能同一性以及组织动态平衡和修复的细胞因子反应的精细调控。在这篇综述中,我们提供了一个概述,介绍了塑造细胞感知和解释细胞因子信号方式的信号转导网络。我们强调了白细胞介素-6 生物学的重要性,突出了这些机制对生理过程和病理生理结果的重要性。