Department of Cell, Developmental, and Integrative Biology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Department of Chemistry, Emory University, Atlanta, GA 30322, USA.
J Cell Sci. 2020 Jul 10;133(13):jcs238840. doi: 10.1242/jcs.238840.
Mechanical forces, growth factors and the extracellular matrix all play crucial roles in cell adhesion. To understand how epidermal growth factor receptor (EGFR) impacts the mechanics of adhesion, we employed tension gauge tether (TGT) probes displaying the integrin ligand cRGDfK and quantified integrin tension. EGF exposure significantly increased spread area, cell circularity, integrated integrin tension, mechanical rupture density, radial organization and size of focal adhesions in Cos-7 cells on TGT surfaces. These findings suggest that EGFR regulates integrin tension and the spatial organization of focal adhesions. Additionally, we found that the mechanical tension threshold for outside-in integrin activation is tunable by EGFR. Parallel genetic and pharmacologic strategies demonstrated that these phenotypes are driven by ligand-dependent EGFR signaling. Our results establish a novel mechanism whereby EGFR regulates integrin activation and cell adhesion, providing control over cellular responses to the environment.This article has an associated First Person interview with the first author of the paper.
机械力、生长因子和细胞外基质都在细胞黏附中起着至关重要的作用。为了了解表皮生长因子受体(EGFR)如何影响黏附的力学特性,我们使用了展示整合素配体 cRGDfK 的张力计系绳(TGT)探针,并对整合素张力进行了定量分析。EGF 暴露显著增加了 Cos-7 细胞在 TGT 表面上的铺展面积、细胞圆度、整合素张力、机械破裂密度、黏附斑的径向组织和大小。这些发现表明 EGFR 调节整合素张力和黏附斑的空间组织。此外,我们还发现,EGFR 可调节外向型整合素激活的机械张力阈值。平行的遗传和药理学策略表明,这些表型是由配体依赖性 EGFR 信号驱动的。我们的结果确立了一种新的机制,即 EGFR 调节整合素激活和细胞黏附,从而控制细胞对环境的反应。本文附有该论文第一作者的第一人称采访。