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Kinase suppressor of Ras (KSR1) modulates multiple kit-ligand-dependent mast cell functions
Mia Chen1, Sarah Burgin, Karl Staser
1Department of Pediatrics, Indiana University School of Medicine, Indianapolis, USA.
Abstract:
The intricately regulated Ras pathway coordinates multiple kit-ligand-induced mast cell functions, including chemotaxis, proliferation, and degranulation. However, the intracellular proteins that modulate the intensity and duration of stem cell factor-induced signals and the consequent cellular response are incompletely understood. Scaffolding proteins coordinate the spatial organization of mitogen-activated protein kinase proteins that may potentiate and/or inhibit cell functions. The kinase suppressor of Ras (KSR1) protein is known to function as a molecular scaffold and coordinates the organization of Raf/Mek/Erk in response to receptor tyrosine kinases. However, the impact of KSR1 in myeloid mast cell functions and in response to stem cell factor remains unknown. In the present study, we investigated the role of KSR1 in regulating cellular functions of bone marrow-derived mast cells of KSR1-deficient ((-/-)) mice. Genetic disruption of KSR1 resulted in both striking reductions in kit-ligand-mediated proliferation and degranulation, which are commonly attributed to mitogen-activated protein kinase signals. Surprisingly, disruption of the KSR1 scaffold also resulted in a decline in migration that is generally not linked to Raf-Erk signals. We found that loss of KSR1 does impact the biochemical activation of p21-activated kinase, a kinase that is known to modulate Raf-Erk signals and also F-actin polymerization key to mast cell migration. Collectively, these studies demonstrate that the scaffolding protein KSR1 has an important role in multiple kit-ligand-mediated mast cell functions. This study elucidates varied mast cell physiological functions for KSR1, including those related to cytoskeletal organization, and it suggests a novel molecular target for attenuating mast cell-mediated inflammation.
Insights
The scaffolding protein Kinase Suppressor of Ras 1 (KSR1) is crucial for mast cell functions, regulating proliferation, degranulation, and migration by influencing key signaling pathways and cytoskeletal organization.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- The Ras pathway regulates mast cell functions like proliferation and degranulation.
- Intracellular proteins modulating these signals are not fully understood.
- Scaffolding proteins organize mitogen-activated protein kinase pathways.
Purpose of the Study:
- Investigate the role of Kinase Suppressor of Ras 1 (KSR1) in mast cell functions.
- Determine KSR1's impact on stem cell factor-induced signaling in bone marrow-derived mast cells.
Main Methods:
- Utilized KSR1-deficient ((-/-)) mice.
- Analyzed bone marrow-derived mast cells.
- Assessed mast cell proliferation, degranulation, and migration.
- Examined p21-activated kinase activation and F-actin polymerization.
Main Results:
- KSR1 deficiency significantly reduced stem cell factor-mediated proliferation and degranulation.
- KSR1 loss also impaired mast cell migration.
- Loss of KSR1 affected p21-activated kinase activation and F-actin polymerization.
Conclusions:
- KSR1 plays a significant role in multiple kit-ligand-mediated mast cell functions.
- KSR1 influences cytoskeletal organization and mast cell migration.
- KSR1 represents a potential target for modulating mast cell-mediated inflammation.
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