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*Result*: Phosphoproteomics identifies dual-site phosphorylation in an extended basophilic motif regulating FILIP1-mediated degradation of filamin-C

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*Title*:
Phosphoproteomics identifies dual-site phosphorylation in an extended basophilic motif regulating FILIP1-mediated degradation of filamin-C
*Author/editor-in-chief*:
Reimann, Lena (Verfasser) ; Schwäble, Anja N. (Verfasser) ; Fricke, Anna L. (Verfasser) ; Mühlhäuser, Wignand (Verfasser) ; Leber, Yvonne (Verfasser) ; Lohanadan, Keerthika (Verfasser); Puchinger, Martin G. (Verfasser); Schäuble, Sascha (Verfasser) ; Fäßler, Erik (Verfasser); Wiese, Heike (Verfasser); Reichenbach, Christa (Verfasser) ; Knapp, Bettina (Verfasser) ; Peikert, Christian Dominik (Verfasser) ; Drepper, Friedel (Verfasser) ; Hahn, Udo (Verfasser) ; Kreutz, Clemens (Verfasser) ; Ven, Peter F. M. van der (Verfasser); Radziwill, Gerald (Verfasser) ; Djinović-Carugo, Kristina (Verfasser); Fürst, Dieter O. (Verfasser); Warscheid, Bettina (Verfasser) 
*Publication*:
Freiburg : Universität, 2020
*Physical description scale*:
Online-Ressource
*Format*:
*eBook*
*Language*:
*eng*
*Notes*:
Communications biology
3, 1 (2020) , 253, ISSN: 2399-3642
*DOI*:
10.1038/s42003-020-0982-5

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Phosphoproteomics identifies dual-site phosphorylation in an extended basophilic motif regulating FILIP1-mediated degradation of filamin-C / Reimann, Lena
HEB466716214

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