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Growth factor-dependent AKT activation and cell migration requires the function of c-K(B)-Ras versus other cellular
Jinhui Liao1, Sarah M Planchon, Janice C Wolfman
1Department of Cell Biology, Cleveland Clinic Lerner College of Medicine at Case Western Reserve University, Cleveland, Ohio 44195, USA.
Abstract:
K-Ras-negative fibroblasts are defective in their steady-state expression of MMP-2. This occurs through c-K(B)-Ras dependent regulation of basal levels of AKT activity. In this report, we have extended those studies to demonstrate that in the absence of K-Ras expression, PDGF-BB fails to induce significant AKT activation, although this was not the case in N-Ras-negative cells. This phenotype was directly linked to PDGF-dependent cell migration. All of the independently immortalized K-Ras-negative cells failed to migrate upon the addition of PDGF. Only ectopic expression of c-K(B)-Ras, not c-K(A)-Ras nor oncogenic N-Ras, could restore both PDGF-dependent AKT activation and cell migration. Since most Ras binding partners can interact with all Ras isoforms, the specificity of PDGF-dependent activation of AKT and enhanced cell migration suggests that these outcomes are likely to be regulated through a c-K(B)-Ras-specific binding partner. Others have published that of the four Ras isoforms, only K(B)-Ras can form a stable complex with calmodulin (CaM). Along those lines, we provide evidence that 1) PDGF addition results in increased levels of a complex between c-K(B)-Ras and CaM and 2) the biological outcomes that are strictly dependent on c-K(B)-Ras (AKT activation and cell migration) are blocked by CaM antagonists. The PDGF-dependent activation of ERK is unaffected by the absence of K(B)-Ras and presence of CaM antagonists. This is the first example of a linkage between a specific biological outcome, cell migration, and the activity of a single Ras isoform, c-K(B)-Ras.
Insights
Specific Ras isoform c-K(B)-Ras regulates platelet-derived growth factor (PDGF)-dependent cell migration and AKT activation. This process involves calmodulin (CaM) and is unique to c-K(B)-Ras, not other Ras isoforms.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- K-Ras-negative fibroblasts show impaired MMP-2 expression due to c-K(B)-Ras regulation of AKT activity.
- Previous studies established a link between K-Ras and AKT activity.
Purpose of the Study:
- To investigate the specific role of Ras isoforms in PDGF-BB-induced AKT activation and cell migration.
- To determine if c-K(B)-Ras is uniquely responsible for these PDGF-dependent cellular responses.
Main Methods:
- Utilized K-Ras-negative and N-Ras-negative fibroblasts.
- Assessed PDGF-BB-induced AKT activation and cell migration.
- Investigated the effect of ectopic expression of different Ras isoforms (c-K(B)-Ras, c-K(A)-Ras, N-Ras).
- Examined the interaction between c-K(B)-Ras and calmodulin (CaM) using PDGF stimulation.
- Tested the impact of CaM antagonists on PDGF-dependent signaling and migration.
Main Results:
- Absence of K-Ras abolished PDGF-BB-induced AKT activation and cell migration, while N-Ras-negative cells were unaffected.
- Only ectopic expression of c-K(B)-Ras restored both AKT activation and migration.
- PDGF stimulation increased the complex formation between c-K(B)-Ras and CaM.
- CaM antagonists blocked c-K(B)-Ras-dependent AKT activation and cell migration.
- PDGF-dependent ERK activation was independent of K(B)-Ras and CaM.
Conclusions:
- c-K(B)-Ras specifically mediates PDGF-dependent AKT activation and cell migration.
- Calmodulin is a crucial binding partner for c-K(B)-Ras in regulating these cellular processes.
- This study highlights the isoform-specific function of Ras proteins in cellular signaling and migration.
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