Brain Science Institute, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea; Division of Bio-Medical Science & Technology, KIST School, Korea University of Science and Technology, Seoul 02792, Republic of Korea.
Brain Science Institute, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea; Department of Converging Science and Technology, Kyung Hee University, Seoul 02453, Republic of Korea.
Cell Rep. 2022 Jul 12;40(2):111080. doi: 10.1016/j.celrep.2022.111080.
How protein signaling networks respond to different input strengths is an important but poorly understood problem in cell biology. For example, RhoA can promote focal adhesion (FA) growth or disassembly, but how RhoA activity mediates these opposite outcomes is not clear. Here, we develop a photoswitchable RhoA guanine nucleotide exchange factor (GEF), psRhoGEF, to precisely control endogenous RhoA activity. Using this optical tool, we discover that peak FA disassembly selectively occurs upon activation of RhoA to submaximal levels. We also find that Src activation at FAs selectively occurs upon submaximal RhoA activation, identifying Src as an amplitude-dependent RhoA effector. Finally, a pharmacological Src inhibitor reverses the direction of the FA response to RhoA activation from disassembly to growth, demonstrating that Src functions to suppress FA growth upon RhoA activation. Thus, rheostatic control of RhoA activation by psRhoGEF reveals that cells can use signal amplitude to produce multiple responses to a single biochemical signal.
蛋白质信号网络如何响应不同的输入强度是细胞生物学中一个重要但尚未被充分理解的问题。例如,RhoA 可以促进焦点黏附(FA)的生长或解体,但 RhoA 活性如何介导这些相反的结果尚不清楚。在这里,我们开发了一种光可切换的 RhoA 鸟嘌呤核苷酸交换因子(GEF),即 psRhoGEF,以精确控制内源性 RhoA 活性。使用这种光学工具,我们发现 FA 的选择性解体峰值仅出现在 RhoA 被激活至亚最大值时。我们还发现,FA 处的 Src 激活仅出现在亚最大值的 RhoA 激活时,鉴定出 Src 是一个依赖于幅度的 RhoA 效应器。最后,一种药理学 Src 抑制剂将 RhoA 激活对 FA 响应的方向从解体转变为生长,证明 Src 在 RhoA 激活时起抑制 FA 生长的作用。因此,psRhoGEF 对 RhoA 激活的流控式调节表明,细胞可以使用信号幅度对单个生化信号产生多种响应。