Related Experiment Videos
Epidermal growth factor treatment enhances the kinase activity of kinase suppressor of Ras
H R Xing1, J Lozano, R Kolesnick
1Laboratory of Signal Transduction, The Sloan-Kettering Institute, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Abstract:
In Drosophila melanogaster and Caenorhabditis elegans, kinase suppressor of Ras (KSR) functions as a positive modulator of Ras-dependent signaling either upstream of or parallel to Raf. Attempts to characterize the biochemical and biological properties of mammalian KSR, however, have had limited success. Although some studies demonstrated a requirement of KSR kinase activity for its action, others indicated the kinase function of KSR is dispensable and suggested that KSR acts primarily as a scaffold protein. Interpretations of KSR function are further hampered by the lack of a standardized assay for its kinase activity in vitro. To address this issue, we established a two-stage in vitro kinase assay in which KSR never comes in contact with any recombinant kinases other than c-Raf-1. Using this assay, we show that KSR immunoprecipitated from quiescent COS-7 cells overexpressing Flag-tagged KSR was inactive, but its activity was rapidly and markedly induced upon epidermal growth factor treatment. Moreover, KSR-reconstituted mitogen-activated protein kinase activation was detected in KSR immunoprecipitates depleted of all contaminating kinases (c-Raf-1, MEK1, ERK2) by multiple high salt washes. Only full-length kinase-active KSR was capable of signaling c-Raf-1-dependent activity as kinase inactive and C- and N-terminal deletion mutants were without effect. Furthermore, endogenous KSR isolated from A431 cells, which contain high levels of activated EGF receptor, displays constitutively enhanced kinase activity. Hence, KSR kinase activity is not an artifact of overexpression but a property intrinsic to this protein. The recognition of EGF as a potent activator of KSR kinase activity and the availability of a well defined in vitro kinase assay should facilitate the definition of the function of KSR as a Ras-effector molecule.
Insights
Kinase suppressor of Ras (KSR) is a key regulator of Ras signaling. This study establishes a novel in vitro assay demonstrating KSR
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Kinase suppressor of Ras (KSR) is a known modulator of Ras-dependent signaling in model organisms.
- Mammalian KSR function is debated, with conflicting evidence on whether its kinase activity is essential or if it acts solely as a scaffold protein.
- Lack of a standardized in vitro assay has hindered the biochemical characterization of KSR kinase activity.
Purpose of the Study:
- To develop and validate a robust two-stage in vitro kinase assay for mammalian KSR.
- To investigate the regulation of KSR kinase activity by epidermal growth factor (EGF).
- To determine the role of KSR kinase activity in downstream signaling pathways.
Main Methods:
- Established a two-stage in vitro kinase assay using Flag-tagged KSR immunoprecipitated from COS-7 cells.
- Utilized high salt washes to deplete contaminating kinases (c-Raf-1, MEK1, ERK2) from KSR immunoprecipitates.
- Assessed KSR kinase activity in response to EGF treatment and evaluated the signaling capacity of full-length versus mutant KSR proteins.
Main Results:
- KSR immunoprecipitated from quiescent cells was inactive but rapidly activated by EGF treatment.
- Mitogen-activated protein kinase (MAPK) activation was detected in purified KSR immunoprecipitates, confirming KSR's role in signaling.
- Only full-length, kinase-active KSR mediated c-Raf-1-dependent activity; inactive or truncated mutants were ineffective.
- Endogenous KSR from EGF-stimulated A431 cells exhibited constitutively enhanced kinase activity, indicating intrinsic KSR kinase function.
Conclusions:
- KSR possesses intrinsic kinase activity that is regulated by EGF.
- The developed in vitro assay provides a reliable method for studying KSR kinase function.
- These findings clarify KSR's role as an active kinase and a crucial Ras-effector molecule in mammalian signaling.