Forgacs Gabor, Yook Soon Hyung, Janmey Paul A, Jeong Hawoong, Burd Christopher G
Department of Physics and Biology, University of Missouri, Columbia, MO 65211, USA.
J Cell Sci. 2004 Jun 1;117(Pt 13):2769-75. doi: 10.1242/jcs.01122. Epub 2004 May 18.
Intracellular signal transduction occurs through cascades of reactions involving dozens of proteins that transmit signals from the cell surface, through a crowded cellular environment filled with organelles and a filamentous cytoskeleton, to specific targets. Numerous signaling molecules are immobilized or transiently bound to the cytoskeleton, yet most models for signaling pathways have no specific role for this mesh, which is often presumed to function primarily as a scaffold that determines cell mechanics but not information flow. We combined analytical tools with several recently established large-scale protein-protein interaction maps for Saccharomyces cerevisiae to quantitatively address the role of the cytoskeleton in intracellular signaling. The results demonstrate that the network of signaling proteins is intimately linked to the cytoskeleton, suggesting that this interconnected filamentous structure plays a crucial and distinct functional role in signal transduction.
细胞内信号转导通过一系列反应发生,这些反应涉及数十种蛋白质,它们将信号从细胞表面传递,穿过充满细胞器和丝状细胞骨架的拥挤细胞环境,到达特定靶点。许多信号分子固定在细胞骨架上或与细胞骨架短暂结合,但大多数信号通路模型并未赋予这个网络特定作用,通常认为其主要作为决定细胞力学而非信息流的支架发挥作用。我们将分析工具与酿酒酵母最近建立的几个大规模蛋白质 - 蛋白质相互作用图谱相结合,以定量研究细胞骨架在细胞内信号转导中的作用。结果表明,信号蛋白网络与细胞骨架紧密相连,这表明这种相互连接的丝状结构在信号转导中发挥着关键且独特的功能作用。