Department of Integrative Biology and Physiology, University of California, Los Angeles, California, USA.
Cousins Center for Psychoneuroimmunology, Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, California, USA.
FASEB J. 2019 Mar;33(3):3997-4006. doi: 10.1096/fj.201801429RR. Epub 2018 Dec 3.
Critical functions of immune cells require them to rapidly change their shape and generate forces in response to cues from their surrounding environment. However, little is known about how soluble factors that may be present in the microenvironment modulate key aspects of cellular mechanobiology-such as immune cell deformability and force generation-to impact functions such as phagocytosis and migration. Here we show that signaling by soluble stress hormones through β-adrenoceptors (β-AR) reduces the deformability of macrophages; this is dependent on changes in the organization of the actin cytoskeleton and is associated with functional changes in phagocytosis and migration. Pharmacologic interventions reveal that the impact of β-AR signaling on macrophage deformability is dependent on actin-related proteins 2/3, indicating that stress hormone signaling through β-AR shifts actin organization to favor branched structures rather than linear unbranched actin filaments. These findings show that through remodeling of the actin cytoskeleton, β-AR-mediated stress hormone signaling modulates macrophage mechanotype to impact functions that play a critical role in immune response.-Kim, T.-H., Ly, C., Christodoulides, A., Nowell, C. J., Gunning, P. W., Sloan, E. K., Rowat, A. C. Stress hormone signaling through β-adrenergic receptors regulates macrophage mechanotype and function.
免疫细胞的关键功能要求它们能够根据周围环境的信号迅速改变形状并产生力。然而,人们对于环境中可能存在的可溶性因子如何调节细胞机械生物学的关键方面(如免疫细胞的变形性和力的产生),从而影响吞噬和迁移等功能知之甚少。在这里,我们表明,可溶性应激激素通过β-肾上腺素能受体(β-AR)的信号转导降低了巨噬细胞的变形性;这依赖于肌动蛋白细胞骨架的组织变化,并与吞噬和迁移的功能变化相关。药理干预表明,β-AR 信号对巨噬细胞变形性的影响依赖于肌动蛋白相关蛋白 2/3,表明β-AR 介导的应激激素信号通过β-AR 改变肌动蛋白组织以有利于分支结构而不是线性无分支肌动蛋白丝。这些发现表明,通过肌动蛋白细胞骨架的重塑,β-AR 介导的应激激素信号调节巨噬细胞力学特性,从而影响在免疫反应中起关键作用的功能。