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Updated: Sep 27, 2026

Analysis of the c-KIT Ligand Promoter Using Chromatin Immunoprecipitation
Published on: June 27, 2017
Src family kinases are involved in the differential signaling from two splice forms of c-Kit
Olexandr Voytyuk1, Johan Lennartsson, Akira Mogi
1Ludwig Institute for Cancer Research, Biomedical Center, SE-751 24 Uppsala, Sweden, Sweden.
Abstract:
In both mice and humans alternate splicing results in isoforms of c-Kit characterized by the presence or the absence of a tetrapeptide sequence, GNNK, in the juxtamembrane region of the extracellular domain. Dramatic differences in the kinetics and magnitude of activation of the intrinsic tyrosine kinase activity of c-Kit between the GNNK- and GNNK+ isoforms has previously been shown. Here we report the analysis of downstream targets of receptor signaling, which revealed that the signaling was differentially regulated in the two splice forms. The kinetics of phosphorylation of Shc, previously demonstrated to be phosphorylated by Src downstream of c-Kit, was stronger and more rapid in the GNNK- form, whereas it showed slower kinetics in the GNNK+ form. Inhibition of Src family kinases with the specific Src family kinase inhibitor SU6656 altered the kinetics of activation of the GNNK- form of c-Kit so that it resembled that of the GNNK+ form. In cells expressing the GNNK- form, SCF was rapidly degraded, whereas in cells expressing the GNNK+ form only showed a very slow rate of degradation of SCF. In the GNNK+ form the Src inhibitor SU6656 only had a weak effect on degradation, whereas in the GNNK- form it dramatically inhibited degradation. In summary, the two splice forms show, despite only a four-amino acid sequence difference, remarkable differences in their signaling capabilities.
Insights
Alternate splicing of c-Kit creates two isoforms, GNNK+ and GNNK-, with distinct signaling. This difference impacts downstream target phosphorylation and ligand degradation, highlighting functional divergence from a single amino acid change.
Area of Science:
- Molecular Biology
- Cell Signaling
Background:
- Alternate splicing of c-Kit generates isoforms with and without the GNNK sequence.
- Previous studies showed differential tyrosine kinase activity between GNNK+ and GNNK- c-Kit isoforms.
Purpose of the Study:
- To analyze downstream signaling targets of c-Kit splice variants.
- To investigate the role of Src family kinases in regulating c-Kit signaling differences.
Main Methods:
- Analysis of downstream phosphorylation targets (e.g., Shc).
- Inhibition of Src family kinases using SU6656.
- Assessment of SCF ligand degradation rates.
Main Results:
- GNNK- c-Kit showed rapid and strong Shc phosphorylation, unlike the GNNK+ form.
- Src inhibition normalized GNNK- c-Kit activation kinetics to resemble the GNNK+ form.
- GNNK- c-Kit led to rapid SCF degradation, while GNNK+ showed slow degradation, with Src inhibition affecting GNNK- more significantly.
Conclusions:
- The presence or absence of the GNNK sequence in c-Kit isoforms leads to significant differences in downstream signaling.
- Src family kinases play a crucial role in modulating the distinct signaling kinetics and ligand degradation observed between c-Kit splice variants.
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