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  • F-box protein FBXL16 binds PP2A-B55α and regulates differentiation of embryonic stem cells along the FLK1+ lineage.

F-box protein FBXL16 binds PP2A-B55α and regulates differentiation of embryonic stem cells along the FLK1+ lineage.

Molecular & cellular proteomics : MCP (2014-01-07)
Narimon Honarpour, Christopher M Rose, Justin Brumbaugh, Jody Anderson, Robert L J Graham, Michael J Sweredoski, Sonja Hess, Joshua J Coon, Raymond J Deshaies
ABSTRACT

The programmed formation of specific tissues from embryonic stem cells is a major goal of regenerative medicine. To identify points of intervention in cardiac tissue formation, we performed an siRNA screen in murine embryonic stem cells to identify ubiquitin system genes that repress cardiovascular tissue formation. Our screen uncovered an F-box protein, Fbxl16, as a repressor of one of the earliest steps in the cardiogenic lineage: FLK1+ progenitor formation. Whereas F-box proteins typically form SCF ubiquitin ligases, shotgun mass spectrometry revealed that FBXL16 instead binds protein phosphatase 2A (PP2A) containing a B55 specificity subunit (PP2A(B55)). Phosphoproteomic analyses indicate that FBXL16 negatively regulates phosphorylation of the established PP2A(B55) substrate, vimentin. We suggest that FBXL16 negatively regulates the activity of B55α-PP2A to modulate the genesis of FLK1+ progenitor cells.

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Sigma-Aldrich
Anti-α-tubulina monoclonale, clone B-5-1-2, ascites fluid
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Cell Proliferation ELISA, BrdU (chemiluminescent)
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Anti-Actin antibody, Mouse monoclonal, clone AC-40, purified from hybridoma cell culture
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Anticorpo anti-PP2A, subunità C, clone 1D6, clone 1D6, Upstate®, from mouse
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Quantitative Alkaline Phosphatase ES Characterization Kit, This Quantitative Alkaline Phosphatase Embryonic Stem (ES) Characterization Kit easily quantifies the amount of alkaline phosphatase present within their embryonic stem cell cultures using a convenient 96-well colorimetric enzymatic assay.