Department of Biochemistry and Molecular Biology, The University of Texas Medical Branch, 301 University Boulevard, Galveston, TX, United States.
Department of Pediatrics, The University of Texas Medical Branch, 301 University Boulevard, Galveston, TX, United States.
J Leukoc Biol. 2023 Nov 24;114(6):666-671. doi: 10.1093/jleuko/qiad097.
Microbial infection is characterized by release of multiple proinflammatory chemokines that direct neutrophils to the insult site. How collective function of these chemokines orchestrates neutrophil recruitment is not known. Here, we characterized the role for heterodimer and show that the Cxcl1-Cxcl2 heterodimer is a potent neutrophil chemoattractant in mice and can recruit more neutrophils than the individual chemokines. Chemokine-mediated neutrophil recruitment is determined by Cxcr2 receptor signaling, Cxcr2 endocytosis, and binding to glycosaminoglycans. We have now determined heterodimer's Cxcr2 activity using cellular assays and Cxcr2 density in blood and recruited neutrophils in heterodimer-treated mice. We have shown that the heterodimer binds glycosaminoglycans with higher affinity and more efficiently than Cxcl1 or Cxcl2. These data collectively indicate that optimal glycosaminoglycan interactions and dampened receptor activity acting in concert in a dynamic fashion promote heterodimer-mediated robust neutrophil recruitment. We propose that this could play a critical role in combating infection.
微生物感染的特征是释放多种促炎趋化因子,这些趋化因子将中性粒细胞导向损伤部位。然而,这些趋化因子如何协同作用来募集中性粒细胞尚不清楚。在这里,我们研究了异二聚体的作用,并表明 Cxcl1-Cxcl2 异二聚体在小鼠中是一种有效的中性粒细胞趋化因子,其招募的中性粒细胞比单个趋化因子更多。趋化因子介导的中性粒细胞募集取决于 Cxcr2 受体信号、Cxcr2 内吞作用以及与糖胺聚糖的结合。我们现在已经使用细胞测定法和血液中的 Cxcr2 密度以及在异二聚体处理的小鼠中募集的中性粒细胞确定了异二聚体的 Cxcr2 活性。我们表明,异二聚体与糖胺聚糖的结合亲和力更高,效率也更高,优于 Cxcl1 或 Cxcl2。这些数据表明,最优的糖胺聚糖相互作用和协同作用的减弱的受体活性以动态方式促进异二聚体介导的强有力的中性粒细胞募集。我们提出,这可能在对抗感染中发挥关键作用。