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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Translocation of Exogenous FGF1 and FGF2 Protects the Cell against Apoptosis Independently of Receptor Activation
Michal Kostas1, Agata Lampart2, Joanna Bober2
1Department of Protein Biotechnology, Faculty of Biotechnology, University of Wroclaw, Wroclaw, Poland; Department of Molecular Cell Biology, Institute for Cancer Research, Oslo University Hospital, Montebello, Oslo, Norway.
Abstract:
FGF1 and FGF2 bind to specific cell-surface tyrosine kinase receptors (FGFRs) and activate intracellular signaling that leads to proliferation, migration or differentiation of many cell types. Besides this classical mode of action, under stress conditions, FGF1 and FGF2 are translocated in a receptor-dependent manner via the endosomal membrane into the cytosol and nucleus of the cell. However, despite many years of research, the role of translocated FGF1 and FGF2 inside the cell remains unclear. Here, we reveal an anti-apoptotic activity of intracellular FGF1 and FGF2, which is independent of FGFR activation and downstream signaling. We observed an inhibition of cell apoptosis induced by serum starvation or staurosporine upon treatment with exogenous FGF1 or FGF2, despite the presence of highly potent FGFR inhibitors. Similar results were found when the tyrosine kinase of FGFR1 was completely blocked by a specific mutation. Moreover, the anti-apoptotic effect of the growth factors was abolished by known inhibitors of the translocation of FGF1 and FGF2 from the endosomes to the interior of the cell. Interestingly, FGF2 showed higher anti-apoptotic activity than FGF1. Since FGF2 is not phosphorylated by PKCδ and is present inside the nucleus longer than is FGF1, we speculated that the different activities could reflect their diverse nuclear export kinetics. Indeed, we observed that FGF1 mutations preventing binding to nucleolin and therefore phosphorylation in the nucleus affect the anti-apoptotic activity of FGF1. Taken together, our data indicate that the translocation of FGF1 and FGF2 protects cells against apoptosis and promotes cell survival.
Insights
Intracellular fibroblast growth factors (FGF1 and FGF2) protect cells from apoptosis, independent of cell surface receptors. This translocation mechanism enhances cell survival under stress conditions.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Fibroblast Growth Factors (FGF1 and FGF2) classically signal through cell-surface tyrosine kinase receptors (FGFRs) to regulate cell functions.
- Under stress, FGF1 and FGF2 translocate into the cytosol and nucleus, but their intracellular role remains largely unknown.
Purpose of the Study:
- To investigate the function of intracellular FGF1 and FGF2.
- To determine if translocated FGF1 and FGF2 possess anti-apoptotic activity independent of FGFR signaling.
Main Methods:
- Treatment with exogenous FGF1 or FGF2 under apoptosis-inducing conditions (serum starvation, staurosporine).
- Utilized potent FGFR inhibitors and a mutated FGFR1 to block receptor-dependent signaling.
- Employed inhibitors of FGF translocation from endosomes.
- Analyzed FGF1 and FGF2 nuclear localization and interaction with nucleolin.
Main Results:
- Exogenous FGF1 and FGF2 inhibited apoptosis even when FGFR signaling was blocked.
- The anti-apoptotic effect was dependent on the translocation of FGFs into the cell.
- FGF2 exhibited stronger anti-apoptotic activity than FGF1.
- FGF1's anti-apoptotic function was linked to its nuclear binding to nucleolin and subsequent phosphorylation.
Conclusions:
- Intracellular FGF1 and FGF2 exhibit significant anti-apoptotic activity.
- This protective effect is independent of classical FGFR signaling pathways.
- The translocation of FGF1 and FGF2 into the cell is crucial for promoting cell survival by preventing apoptosis.
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