SIK2: A Novel Negative Feedback Regulator of FGF2 Signaling

Author:

Kuser‐Abali Gamze12,Ugurlu‐Bayarslan Asli13ORCID,Yilmaz Yeliz14,Ozcan Ferruh15,Karaer Funda16,Bugra Kuyas17

Affiliation:

1. Department of Molecular Biology and Genetics Bogazici University Bebek Istanbul 34342 Turkey

2. Faculty of Medicine Nursing & Health Sciences The Central Clinical School Monash University Melbourne Victoria Australia

3. Department of Biology Kastamonu University Kastamonu 37150 Turkey

4. Izmir Biomedicine and Genome Center Izmir 35340 Turkey

5. Department of Molecular Biology and Genetics Gebze Technical University Gebze Kocaeli 41400 Turkey

6. Ministry of Education Turkey

7. Life Sciences Center Bogazici University Bebek Istanbul 34342 Turkey

Abstract

AbstractA wide range of cells respond to fibroblast growth factor 2 (FGF2) by proliferation via activation of the Ras/ERK1/2 pathway. In this study, the potential involvement of salt inducible kinase SIK2) in this cascade within retinal Müller glia is explored. It is found that SIK2 phosphorylation status and activity are modulated in an FGF2‐dependent manner, possibly via ERK1/2. With SIK2 downregulation, enhanced ERK1/2 activation with delayed attenuation and increased cell proliferation is observed, while SIK2 overexpression hampers FGF2‐dependent ERK1/2 activation. In vitro kinase and site‐directed mutagenesis studies indicate that SIK2 targets the pathway element GRB2‐associated‐binding protein 1 (Gab1) on Ser266. This phosphorylation event weakens Gab1 interactions with its partners growth factor receptor‐bound protein 2 (Grb2) and Src homology region 2 domain containing phosphatase 2 (Shp2). Collectively, these results suggest that during FGF2‐dependent proliferation process ERK1/2‐mediated activation of SIK2 targets Gab1, resulting in downregulation of the Ras/ERK1/2 cascade in a feedback loop.

Publisher

Wiley

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