Quantitative effect of scaffold abundance on signal propagation
Open Access
- 1 January 2009
- journal article
- research article
- Published by Springer Nature in Molecular Systems Biology
- Vol. 5 (1) , 313
- https://doi.org/10.1038/msb.2009.73
Abstract
Protein scaffolds bring together multiple components of a signalling pathway, thereby promoting signal propagation along a common physical ‘backbone’. Scaffolds play a prominent role in natural signalling pathways and provide a promising platform for synthetic circuits. To better understand how scaffolding quantitatively affects signal transmission, we conducted an in vivo sensitivity analysis of the yeast mating pathway to a broad range of perturbations in the abundance of the scaffold Ste5. Our measurements show that signal throughput exhibits a biphasic dependence on scaffold concentration and that altering the amount of scaffold binding partners reshapes this biphasic dependence. Unexpectedly, the wild‐type level of Ste5 is ∼10‐fold below the optimum needed to maximize signal throughput. This sub‐optimal configuration may be a tradeoff as increasing Ste5 expression promotes baseline activation of the mating pathway. Furthermore, operating at a sub‐optimal level of Ste5 may provide regulatory flexibility as tuning Ste5 expression up or down directly modulates the downstream phenotypic response. Our quantitative analysis reveals performance tradeoffs in scaffold‐based modules and defines engineering challenges for implementing molecular scaffolds in synthetic pathways. Mol Syst Biol. 5: 313Keywords
This publication has 14 references indexed in Scilit:
- Nucleus-Specific and Cell Cycle-Regulated Degradation of Mitogen-Activated Protein Kinase Scaffold Protein Ste5 Contributes to the Control of Signaling CompetenceMolecular and Cellular Biology, 2009
- Regulation of Cell Signaling Dynamics by the Protein Kinase-Scaffold Ste5Molecular Cell, 2008
- Using Engineered Scaffold Interactions to Reshape MAP Kinase Pathway Signaling DynamicsScience, 2008
- The Ste5 Scaffold Allosterically Modulates Signaling Output of the Yeast Mating PathwayScience, 2006
- A conserved protein interaction network involving the yeast MAP kinases Fus3 and Kss1The Journal of cell biology, 2004
- What Do Scaffold Proteins Really Do?Science's STKE, 2000
- Kinase Suppressor of Ras Inhibits the Activation of Extracellular Ligand-regulated (ERK) Mitogen-activated Protein (MAP) Kinase by Growth Factors, Activated Ras, and Ras EffectorsPublished by Elsevier ,1998
- A Cytoplasmic Inhibitor of the JNK Signal Transduction PathwayScience, 1997
- Tripping the switch fantastic: how a protein kinase cascade can convert graded inputs into switch-like outputsTrends in Biochemical Sciences, 1996
- The MAP kinase Fus3 associates with and phosphorylates the upstream signaling component Ste5.Genes & Development, 1994