Rys Joanna P, DuFort Christopher C, Monteiro David A, Baird Michelle A, Oses-Prieto Juan A, Chand Shreya, Burlingame Alma L, Davidson Michael W, Alliston Tamara N
UC Berkeley-UC San Francisco Graduate Program in Bioengineering, University of California, San Francisco, San Francisco, United States.
Department of Orthopaedic Surgery, University of California, San Francisco, San Francisco, United States.
Elife. 2015 Dec 10;4:e09300. doi: 10.7554/eLife.09300.
Cell surface receptors are central to the cell's ability to generate coordinated responses to the multitude of biochemical and physical cues in the microenvironment. However, the mechanisms by which receptors enable this concerted cellular response remain unclear. To investigate the effect of cellular tension on cell surface receptors, we combined novel high-resolution imaging and single particle tracking with established biochemical assays to examine TGFβ signaling. We find that TGFβ receptors are discretely organized to segregated spatial domains at the cell surface. Integrin-rich focal adhesions organize TβRII around TβRI, limiting the integration of TβRII while sequestering TβRI at these sites. Disruption of cellular tension leads to a collapse of this spatial organization and drives formation of heteromeric TβRI/TβRII complexes and Smad activation. This work details a novel mechanism by which cellular tension regulates TGFβ receptor organization, multimerization, and function, providing new insight into the mechanisms that integrate biochemical and physical cues.
细胞表面受体对于细胞在微环境中对众多生化和物理信号产生协调反应的能力至关重要。然而,受体实现这种协同细胞反应的机制仍不清楚。为了研究细胞张力对细胞表面受体的影响,我们将新型高分辨率成像和单粒子追踪与既定的生化分析相结合,以检测TGFβ信号传导。我们发现,TGFβ受体在细胞表面离散地组织成隔离的空间域。富含整合素的粘着斑将TβRII围绕TβRI组织起来,限制TβRII的整合,同时将TβRI隔离在这些位点。细胞张力的破坏导致这种空间组织的崩溃,并驱动异源二聚体TβRI/TβRII复合物的形成和Smad激活。这项工作详细阐述了一种细胞张力调节TGFβ受体组织、多聚化和功能的新机制,为整合生化和物理信号的机制提供了新的见解。