Chakraborty Arup K, Das Jayajit, Zikherman Julie, Yang Ming, Govern Christopher C, Ho Mary, Weiss Arthur, Roose Jeroen
Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Sci Signal. 2009 Apr 14;2(66):pt2. doi: 10.1126/scisignal.266pt2.
Activation of Ras proteins underlies functional decisions in diverse cell types. Two molecules, Ras-GRP and SOS (Ras-guanine nucleotide-releasing protein and Son of Sevenless, respectively), catalyze Ras activation in lymphocytes. Binding of active Ras to the allosteric pocket of SOS markedly increases the activity of SOS. Thus, there is a positive feedback loop regulating SOS. Combining in silico and in vitro studies, we demonstrate that "digital" signaling in lymphocytes (cells are "on" or "off") is predicated on this allosteric regulation of SOS. The SOS feedback loop leads to hysteresis in the dose-response curve, which may enable T cells to exhibit "memory" of past encounters with antigen. Ras activation by Ras-GRP alone is "analog" (a graded increase in activation in response to an increase in the amplitude of the stimulus). We describe how the complementary analog (Ras-GRP) and digital (SOS) pathways act on Ras to efficiently convert analog input to digital output and make predictions regarding the importance of digital signaling in lymphocyte function and development.
Ras蛋白的激活是多种细胞类型中功能决策的基础。两种分子,即Ras-GRP和SOS(分别为Ras-鸟嘌呤核苷酸释放蛋白和七号less之子),催化淋巴细胞中的Ras激活。活性Ras与SOS的变构口袋结合会显著增加SOS的活性。因此,存在一个调节SOS的正反馈回路。结合计算机模拟和体外研究,我们证明淋巴细胞中的“数字”信号传导(细胞处于“开”或“关”状态)基于SOS的这种变构调节。SOS反馈回路导致剂量反应曲线出现滞后现象,这可能使T细胞能够展现出过去接触抗原的“记忆”。仅由Ras-GRP激活Ras是“模拟”的(激活程度随刺激幅度增加而分级增加)。我们描述了互补的模拟(Ras-GRP)和数字(SOS)途径如何作用于Ras,以有效地将模拟输入转换为数字输出,并对数字信号在淋巴细胞功能和发育中的重要性进行预测。